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Published in: Journal of Neural Transmission 4/2015

01-04-2015 | Neurology and Preclinical Neurological Studies - Review Article

Brain hypometabolism triggers PHF-like phosphorylation of tau, a major hallmark of Alzheimer’s disease pathology

Authors: Thomas Arendt, Jens Stieler, Max Holzer

Published in: Journal of Neural Transmission | Issue 4/2015

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Abstract

Sporadic Alzheimer’s disease (AD) is a chronic progressive neurodegenerative disorder of unknown cause characterized by fibrillar accumulation of the Aß-peptide and aggregates of the microtubule-associated protein tau in a hyperphosphorylated form. Already at preclinical stages, AD is characterized by hypometabolic states which are a good predictor of cognitive decline. Here, we summarize recent evidence derived from the study of hibernating animals that brain hypometabolism can trigger PHF-like hyperphosphorylation of tau. We put forward the concept that particular types of neurons respond to a hypometabolic state with an elevated phosphorylation of tau protein which represents a physiological mechanism involved in regulating synaptic gain. If, in contrast to hibernation, the hypometabolic state is not terminated after a definite time but rather persists and progresses, the elevated phosphorylation of tau protein endures and the protective reaction associated with it might turn into a pathological cascade leading to neurodegeneration.
Literature
go back to reference Arendt T, Brückner MK (2007) Linking cell-cycle dysfunction in Alzheimer’s disease to a failure of synaptic plasticity. Biochim Biophys Acta 1772:413–421PubMed Arendt T, Brückner MK (2007) Linking cell-cycle dysfunction in Alzheimer’s disease to a failure of synaptic plasticity. Biochim Biophys Acta 1772:413–421PubMed
go back to reference Arendt T, Brückner MK, Bigl V, Marcova L (1995) Dendritic reorganisation in the basal forebrain under degenerative conditions and its defects in Alzheimer’s disease. II. Ageing, Korsakoff’s disease, Parkinson’s disease, and Alzheimer’s disease. J Comp Neurol 351(2):189–222PubMed Arendt T, Brückner MK, Bigl V, Marcova L (1995) Dendritic reorganisation in the basal forebrain under degenerative conditions and its defects in Alzheimer’s disease. II. Ageing, Korsakoff’s disease, Parkinson’s disease, and Alzheimer’s disease. J Comp Neurol 351(2):189–222PubMed
go back to reference Arendt T, Stieler J, Strijkstra AM, Hut RA, Rüdiger J, Van der Zee EA, Harkany T, Holzer M, Härtig W (2003) Reversible paired helical filament-like phosphorylation of tau is an adaptive process associated with neuronal plasticity in hibernating animals. J Neurosci 23:6972–6981PubMed Arendt T, Stieler J, Strijkstra AM, Hut RA, Rüdiger J, Van der Zee EA, Harkany T, Holzer M, Härtig W (2003) Reversible paired helical filament-like phosphorylation of tau is an adaptive process associated with neuronal plasticity in hibernating animals. J Neurosci 23:6972–6981PubMed
go back to reference Bhaskar K, Yen SH, Lee G (2005) Disease-related modifications in tau affect the interaction between Fyn and Tau. J Biol Chem 280:35119–35125PubMed Bhaskar K, Yen SH, Lee G (2005) Disease-related modifications in tau affect the interaction between Fyn and Tau. J Biol Chem 280:35119–35125PubMed
go back to reference Bindman LJ, Lippold OC, Redfearn JW (1963) Comparison of the effects on electrocortical activity of general body cooling of the surface of the brain. Electroencephalogr Clin Neurophysiol 15:238–245PubMed Bindman LJ, Lippold OC, Redfearn JW (1963) Comparison of the effects on electrocortical activity of general body cooling of the surface of the brain. Electroencephalogr Clin Neurophysiol 15:238–245PubMed
go back to reference Braak H, Braak E (1991) Neuropathological stageing of Alzheimer-related changes. Acta Neuropathol 82:239–259PubMed Braak H, Braak E (1991) Neuropathological stageing of Alzheimer-related changes. Acta Neuropathol 82:239–259PubMed
go back to reference Braak H, Del Tredici K (2011) The pathological process underlying Alzheimer’s disease in individuals under thirty. Acta Neuropathol 121(2):171–181PubMed Braak H, Del Tredici K (2011) The pathological process underlying Alzheimer’s disease in individuals under thirty. Acta Neuropathol 121(2):171–181PubMed
go back to reference Braak H, Thal DR, Ghebremedhin E, Del Tredici K (2011) Stages of the pathologic process in Alzheimer disease: age categories from 1 to 100 years. J Neuropathol Exp Neurol 70:960–969PubMed Braak H, Thal DR, Ghebremedhin E, Del Tredici K (2011) Stages of the pathologic process in Alzheimer disease: age categories from 1 to 100 years. J Neuropathol Exp Neurol 70:960–969PubMed
go back to reference Brooks VB (1983) Study of brain function by local, reversible cooling. Rev Physiol Biochem Pharmac 95:1–109 Brooks VB (1983) Study of brain function by local, reversible cooling. Rev Physiol Biochem Pharmac 95:1–109
go back to reference Brooks CM, Koizumi K, Malcolm JL (1955) Effects of changes in temperature on reactions of spinal cord. J Neurophysiol 18:205–216PubMed Brooks CM, Koizumi K, Malcolm JL (1955) Effects of changes in temperature on reactions of spinal cord. J Neurophysiol 18:205–216PubMed
go back to reference Caroni P, Donato F, Muller D (2012) Structural plasticity upon learning: regulation and functions. Nat Rev Neurosci 13:478–490PubMed Caroni P, Donato F, Muller D (2012) Structural plasticity upon learning: regulation and functions. Nat Rev Neurosci 13:478–490PubMed
go back to reference Chatfield PO, Lyman CP (1954) Subcortical electrical activity in the golden hamster during arousal from hibernation. Electroencephalogr Clin Neurophysiol 6:403–408PubMed Chatfield PO, Lyman CP (1954) Subcortical electrical activity in the golden hamster during arousal from hibernation. Electroencephalogr Clin Neurophysiol 6:403–408PubMed
go back to reference Chen Y, Matsushita M, Nairn AC, Damuni Z, Cai D, Frerichs KU, Hallenbeck JM (2001) Mechanisms for increased levels of phosphorylation of elongation factor-2 during hibernation in ground squirrels. Biochemistry 40:11565–11570PubMed Chen Y, Matsushita M, Nairn AC, Damuni Z, Cai D, Frerichs KU, Hallenbeck JM (2001) Mechanisms for increased levels of phosphorylation of elongation factor-2 during hibernation in ground squirrels. Biochemistry 40:11565–11570PubMed
go back to reference Cleveland DW, Hwo SY, Kirschner MW (1977) Physical and chemical properties of purified tau factor and the role of tau in microtubule assembly. J Mol Biol 116:227–247PubMed Cleveland DW, Hwo SY, Kirschner MW (1977) Physical and chemical properties of purified tau factor and the role of tau in microtubule assembly. J Mol Biol 116:227–247PubMed
go back to reference Cremer H, Chazal G, Goridis C, Represa A (1997) NCAM is essential for axonal growth and fasciculation in the hippocampus. Mol Cell Neurosci 8:323–335PubMed Cremer H, Chazal G, Goridis C, Represa A (1997) NCAM is essential for axonal growth and fasciculation in the hippocampus. Mol Cell Neurosci 8:323–335PubMed
go back to reference Daan S, Barnes BM, Strijkstra AM (1991) Warming up for sleep? Ground squirrels sleep during arousals from hibernation. Neurosci Lett 128:265–268PubMed Daan S, Barnes BM, Strijkstra AM (1991) Warming up for sleep? Ground squirrels sleep during arousals from hibernation. Neurosci Lett 128:265–268PubMed
go back to reference de Leon MJ, Convit A, Wolf OT, Tarshish CY, DeSanti S, Rusinek H, Tsui W, Kandil E, Scherer AJ, Roche A, Imossi A, Thorn E, Bobinski M, Caraos C, Lesbre P, Schlyer D, Poirier J, Reisberg B, Fowler J (2001) Prediction of cognitive decline in normal elderly subjects with 2-[(18)F]fluoro-2-deoxy-Dglucose/poitron-emission tomography (FDG/PET). Proc Natl Acad Sci USA 98:10966–10971PubMedCentralPubMed de Leon MJ, Convit A, Wolf OT, Tarshish CY, DeSanti S, Rusinek H, Tsui W, Kandil E, Scherer AJ, Roche A, Imossi A, Thorn E, Bobinski M, Caraos C, Lesbre P, Schlyer D, Poirier J, Reisberg B, Fowler J (2001) Prediction of cognitive decline in normal elderly subjects with 2-[(18)F]fluoro-2-deoxy-Dglucose/poitron-emission tomography (FDG/PET). Proc Natl Acad Sci USA 98:10966–10971PubMedCentralPubMed
go back to reference Devous MDS (2002) Functional brain imaging in the dementias: role in early detection, differential diagnosis, and longitudinal studies. Eur J Nucl Med Mol Imaging 29:1685–1696PubMed Devous MDS (2002) Functional brain imaging in the dementias: role in early detection, differential diagnosis, and longitudinal studies. Eur J Nucl Med Mol Imaging 29:1685–1696PubMed
go back to reference Drechsel DN, Hyman AA, Cobb MH, Kirschner MW (1992) Modulation of the dynamic instability of tubulin assembly by the microtubule-associated protein tau. Mol Biol Cell 3:1141–1154PubMedCentralPubMed Drechsel DN, Hyman AA, Cobb MH, Kirschner MW (1992) Modulation of the dynamic instability of tubulin assembly by the microtubule-associated protein tau. Mol Biol Cell 3:1141–1154PubMedCentralPubMed
go back to reference Durbec P, Cremer H (2001) Revisiting the function of PSA-NCAM in the nervous system. Mol Neurobiol 24:53–64PubMed Durbec P, Cremer H (2001) Revisiting the function of PSA-NCAM in the nervous system. Mol Neurobiol 24:53–64PubMed
go back to reference Elobeid A, Soininen H, Alafuzoff I (2012) Hyperphosphorylated tau in young and middle-aged subjects. Acta Neuropathol 123:97–104PubMedCentralPubMed Elobeid A, Soininen H, Alafuzoff I (2012) Hyperphosphorylated tau in young and middle-aged subjects. Acta Neuropathol 123:97–104PubMedCentralPubMed
go back to reference Fox GB, O’Connell AW, Murphy KJ, Regan CM (1995) Memory consolidation induces a transient and time-dependent increase in the frequency of neural cell adhesion molecule polysialylated cells in the adult rat hippocampus. J Neurochem 65:2796–2799PubMed Fox GB, O’Connell AW, Murphy KJ, Regan CM (1995) Memory consolidation induces a transient and time-dependent increase in the frequency of neural cell adhesion molecule polysialylated cells in the adult rat hippocampus. J Neurochem 65:2796–2799PubMed
go back to reference Frerichs KU, Hallenbeck JM (1998) Hibernation in ground squirrels induces state and species-specific tolerance to hypoxia and aglycemia: an in vitro study in hippocampal slices. J Cereb Blood Flow Metab 18:168–175PubMed Frerichs KU, Hallenbeck JM (1998) Hibernation in ground squirrels induces state and species-specific tolerance to hypoxia and aglycemia: an in vitro study in hippocampal slices. J Cereb Blood Flow Metab 18:168–175PubMed
go back to reference Gasparini L, Xu H (2003) Potential roles of insulin and IGF-1 in Alzheimer’s disease. Trends Neurosci 26:404–406PubMed Gasparini L, Xu H (2003) Potential roles of insulin and IGF-1 in Alzheimer’s disease. Trends Neurosci 26:404–406PubMed
go back to reference Geiser F (2004) Metabolic rate and body temperature reduction during hibernation and daily torpor. Annu Rev Physiol 66:239–274PubMed Geiser F (2004) Metabolic rate and body temperature reduction during hibernation and daily torpor. Annu Rev Physiol 66:239–274PubMed
go back to reference Geiser F, Kenagy GJ (1988) Torpor duration in relation to temperature and metabolisms in hibernating ground squirrels. Physiol Zool 61:442–449 Geiser F, Kenagy GJ (1988) Torpor duration in relation to temperature and metabolisms in hibernating ground squirrels. Physiol Zool 61:442–449
go back to reference Gertz HJ, Xuereb J, Huppert F, Brayne C, McGee MA, Paykel E, Harrington C, Mukaetova-Ladinska E, Arendt T, Wischik CM (1998) Examination of the validity of the hierarchical model of neuropathological staging in normal aging and Alzheimer’s disease. Acta Neuropathol 95:154–158PubMed Gertz HJ, Xuereb J, Huppert F, Brayne C, McGee MA, Paykel E, Harrington C, Mukaetova-Ladinska E, Arendt T, Wischik CM (1998) Examination of the validity of the hierarchical model of neuropathological staging in normal aging and Alzheimer’s disease. Acta Neuropathol 95:154–158PubMed
go back to reference Goedert M, Spillantini MG, Jakes R, Rutherford D, Crowther RA (1989) Multiple isoforms of human microtubule-associated protein tau: sequences and localization in neurofibrillary tangles of Alzheimer’s disease. Neuron 3:519–526PubMed Goedert M, Spillantini MG, Jakes R, Rutherford D, Crowther RA (1989) Multiple isoforms of human microtubule-associated protein tau: sequences and localization in neurofibrillary tangles of Alzheimer’s disease. Neuron 3:519–526PubMed
go back to reference Haley AP, Knight-Scott J, Simnad VI, Manning CA (2006) Increased glucose concentration in the hippocampus in early Alzheimer’s disease following oral glucose ingestion. Magn Reson Imaging 24:715–720PubMed Haley AP, Knight-Scott J, Simnad VI, Manning CA (2006) Increased glucose concentration in the hippocampus in early Alzheimer’s disease following oral glucose ingestion. Magn Reson Imaging 24:715–720PubMed
go back to reference Hamill NJ, McGinn MD, Horowitz JM (1989) Auditory brainstem responses in ground squirrels arousing from hibernation. J Comp Physiol B 159:167–172PubMed Hamill NJ, McGinn MD, Horowitz JM (1989) Auditory brainstem responses in ground squirrels arousing from hibernation. J Comp Physiol B 159:167–172PubMed
go back to reference Härtig W, Klein C, Brauer K, Schüppel KF, Arendt T, Brückner G, Bigl V (2000) Abnormally phosphorylated protein tau in the cortex of aged individuals of various mammalian orders. Acta Neuropathol 100(3):305–312PubMed Härtig W, Klein C, Brauer K, Schüppel KF, Arendt T, Brückner G, Bigl V (2000) Abnormally phosphorylated protein tau in the cortex of aged individuals of various mammalian orders. Acta Neuropathol 100(3):305–312PubMed
go back to reference Härtig W, Stieler J, Boerema AS, Wolf J, Schmidt U, Weisfus J, Bullmann T, Strijkstra AM, Arendt T (2007) Hibernation model of tau phosphorylation in hamsters: selective vulnerability of cholinergic basal forebrain neurons—implications for Alzheimers’s disease. Eur J Neurosci 25:69–80PubMed Härtig W, Stieler J, Boerema AS, Wolf J, Schmidt U, Weisfus J, Bullmann T, Strijkstra AM, Arendt T (2007) Hibernation model of tau phosphorylation in hamsters: selective vulnerability of cholinergic basal forebrain neurons—implications for Alzheimers’s disease. Eur J Neurosci 25:69–80PubMed
go back to reference Heldmaier G (2011) Physiology. Life on low flame in hibernation. Science 331:866–867PubMed Heldmaier G (2011) Physiology. Life on low flame in hibernation. Science 331:866–867PubMed
go back to reference Heldmaier G, Ruf T (1992) Body temperature and metabolic rate during natural hypothermia in endotherms. J Comp Physiol B 162:696–706PubMed Heldmaier G, Ruf T (1992) Body temperature and metabolic rate during natural hypothermia in endotherms. J Comp Physiol B 162:696–706PubMed
go back to reference Heller HC (1979) Hibernation: neural aspects. Annu Rev Physiol 41:305–321PubMed Heller HC (1979) Hibernation: neural aspects. Annu Rev Physiol 41:305–321PubMed
go back to reference Holzer M, Holzapfel HP, Zedlick D, Brückner MK, Arendt T (1994) Abnormally phosphorylated tau protein in Alzheimer’s disease: heterogeneity of individual regional distribution and relationship to clinical severity. Neuroscience 63:499–516PubMed Holzer M, Holzapfel HP, Zedlick D, Brückner MK, Arendt T (1994) Abnormally phosphorylated tau protein in Alzheimer’s disease: heterogeneity of individual regional distribution and relationship to clinical severity. Neuroscience 63:499–516PubMed
go back to reference Holzer M, Gärtner U, Stöbe A, Härtig W, Gruschka H, Brückner MK, Arendt T (2002) Inverse association of Pin1 and tau accumulation in Alzheimer’s disease hippocampus. Acta Neuropathol 104:471–481PubMed Holzer M, Gärtner U, Stöbe A, Härtig W, Gruschka H, Brückner MK, Arendt T (2002) Inverse association of Pin1 and tau accumulation in Alzheimer’s disease hippocampus. Acta Neuropathol 104:471–481PubMed
go back to reference Hoover BR, Reed MN, Su J, Penrod RD, Kotilinek LA, Grant MK, Pitstick R, Carlson GA, Lanier LM, Yuan LL, Ashe KH, Liao D (2010) Tau mislocalization to dendritic spines mediates synaptic dysfunction independently of neurodegeneration. Neuron 68:1067–1081PubMedCentralPubMed Hoover BR, Reed MN, Su J, Penrod RD, Kotilinek LA, Grant MK, Pitstick R, Carlson GA, Lanier LM, Yuan LL, Ashe KH, Liao D (2010) Tau mislocalization to dendritic spines mediates synaptic dysfunction independently of neurodegeneration. Neuron 68:1067–1081PubMedCentralPubMed
go back to reference Hoyer S (1992) Oxidative energy metabolism in Alzheimer brain. Studies in early-onset and late-onset cases. Mol Chem Neuropathol 16:207–224PubMed Hoyer S (1992) Oxidative energy metabolism in Alzheimer brain. Studies in early-onset and late-onset cases. Mol Chem Neuropathol 16:207–224PubMed
go back to reference Hoyer S (1998) Is sporadic Alzheimer disease the brain type of non-insulin dependent diabetes mellitus? A challenging hypothesis. J Neural Transm 105:415–422PubMed Hoyer S (1998) Is sporadic Alzheimer disease the brain type of non-insulin dependent diabetes mellitus? A challenging hypothesis. J Neural Transm 105:415–422PubMed
go back to reference Hoyer S, Nitsch R (1989) Cerebral excess release of neurotransmitter amino acids subsequent to reduced cerebral glucose metabolism in early-onset dementia of Alzheimer type. J Neural Transm 75:227–232PubMed Hoyer S, Nitsch R (1989) Cerebral excess release of neurotransmitter amino acids subsequent to reduced cerebral glucose metabolism in early-onset dementia of Alzheimer type. J Neural Transm 75:227–232PubMed
go back to reference Hoyer S, Nitsch R, Oesterreich K (1991) Predominant abnormality in cerebral glucose utilization in late-onset dementia of the Alzheimer type: a cross-sectional comparison against advanced late-onset and incipient earl-onset cases. J Neural Transm [P-DSect] 3:1–14 Hoyer S, Nitsch R, Oesterreich K (1991) Predominant abnormality in cerebral glucose utilization in late-onset dementia of the Alzheimer type: a cross-sectional comparison against advanced late-onset and incipient earl-onset cases. J Neural Transm [P-DSect] 3:1–14
go back to reference Hut RA, Van der Zee EA, Jansen K, Gerkema MP, Daan S (2002) Gradual reappearance of post-hibernation circadian rhythmicity correlates with numbers of vasopressin-containing neurons in the suprachiasmatic nuclei of European ground squirrels. J Comp Physiol [B] 172:59–70 Hut RA, Van der Zee EA, Jansen K, Gerkema MP, Daan S (2002) Gradual reappearance of post-hibernation circadian rhythmicity correlates with numbers of vasopressin-containing neurons in the suprachiasmatic nuclei of European ground squirrels. J Comp Physiol [B] 172:59–70
go back to reference Igelmund P, Heinemann U, Klussmann FW (1993) Hibernation-related modification of activity-dependent properties of synaptic transmission in hamster hippocampus. Neurosci Res Commun 13:167–173 Igelmund P, Heinemann U, Klussmann FW (1993) Hibernation-related modification of activity-dependent properties of synaptic transmission in hamster hippocampus. Neurosci Res Commun 13:167–173
go back to reference Iqbal K, Grundke-Iqbal I (2005) Metabolic/signal transduction hypothesis of Alzheimer’s disease and other tauopathies. Acta Neuropathol 109:25–31PubMed Iqbal K, Grundke-Iqbal I (2005) Metabolic/signal transduction hypothesis of Alzheimer’s disease and other tauopathies. Acta Neuropathol 109:25–31PubMed
go back to reference Ittner LM, Ke YD, Delerue F, Bi M, Gladbach A, van Eersel J, Wölfing H, Chieng BC, Christie MJ, Napier IA, Eckert A, Staufenbiel M, Hardeman E, Götz J (2010) Dendritic function of tau mediates amyloid-beta toxicity in Alzheimer’s disease mouse models. Cell 142:387–397PubMed Ittner LM, Ke YD, Delerue F, Bi M, Gladbach A, van Eersel J, Wölfing H, Chieng BC, Christie MJ, Napier IA, Eckert A, Staufenbiel M, Hardeman E, Götz J (2010) Dendritic function of tau mediates amyloid-beta toxicity in Alzheimer’s disease mouse models. Cell 142:387–397PubMed
go back to reference Jacobs LF (1996) The economy of winter: phenotypic plasticity in behavior and brain structure. Biol Bull 191:92–100PubMed Jacobs LF (1996) The economy of winter: phenotypic plasticity in behavior and brain structure. Biol Bull 191:92–100PubMed
go back to reference Kalmijn S, Mehta KM, Pols HA, Hofman A, Drexhage HA et al (2000) Subclinical hyperthyroidism and the risk of dementia. The Rotterdam study. Clin Endocrinol (Oxf) 53:733–737 Kalmijn S, Mehta KM, Pols HA, Hofman A, Drexhage HA et al (2000) Subclinical hyperthyroidism and the risk of dementia. The Rotterdam study. Clin Endocrinol (Oxf) 53:733–737
go back to reference Kavanau JL (1997) Memory, sleep and the evolution of mechanisms of synaptic efficacy maintenance. Neuroscience 79:7–44PubMed Kavanau JL (1997) Memory, sleep and the evolution of mechanisms of synaptic efficacy maintenance. Neuroscience 79:7–44PubMed
go back to reference Kenagy GJ, Sharbaugh SM, Nagy KA (1989) Annual cycle of energy and time expenditure in a Golden mantled ground squirrel population. Oecologia 78:269–282 Kenagy GJ, Sharbaugh SM, Nagy KA (1989) Annual cycle of energy and time expenditure in a Golden mantled ground squirrel population. Oecologia 78:269–282
go back to reference Kilduff TS, Krilowicz B, Milsom WK, Trachsel L, Wang LC (1993) Sleep and mammalian hibernation: homologous adaptations and homologous processes? Sleep 16:372–386PubMed Kilduff TS, Krilowicz B, Milsom WK, Trachsel L, Wang LC (1993) Sleep and mammalian hibernation: homologous adaptations and homologous processes? Sleep 16:372–386PubMed
go back to reference Kim YK, Lee DS, Lee SK, Kim SK, Chung CK, Chang KH, Choi KY, Chung JK, Lee MC (2003) Differential features of metabolic abnormalities between medial and lateral temporal lobe epilepsy: quantitative analysis of (18)F-FDG PET using SPM. J Nucl Med 44:1006–1012PubMed Kim YK, Lee DS, Lee SK, Kim SK, Chung CK, Chang KH, Choi KY, Chung JK, Lee MC (2003) Differential features of metabolic abnormalities between medial and lateral temporal lobe epilepsy: quantitative analysis of (18)F-FDG PET using SPM. J Nucl Med 44:1006–1012PubMed
go back to reference Klein C, Kramer EM, Cardine AM, Schraven B, Brandt R, Trotter J (2002) Process outgrowth of oligodendrocytes is promoted by interaction of fyn kinase with the cytoskeletal protein tau. J Neurosci 22:698–707PubMed Klein C, Kramer EM, Cardine AM, Schraven B, Brandt R, Trotter J (2002) Process outgrowth of oligodendrocytes is promoted by interaction of fyn kinase with the cytoskeletal protein tau. J Neurosci 22:698–707PubMed
go back to reference Krilowicz BL, Glotzbach SF, Heller HC (1988) Neuronal activity during sleep and complete bouts of hibernation. Am J Physiol 255:R1008–R1019PubMed Krilowicz BL, Glotzbach SF, Heller HC (1988) Neuronal activity during sleep and complete bouts of hibernation. Am J Physiol 255:R1008–R1019PubMed
go back to reference Lee G (2005) Tau and src family tyrosine kinases. Biochim Biophys Acta 1739:323–330PubMed Lee G (2005) Tau and src family tyrosine kinases. Biochim Biophys Acta 1739:323–330PubMed
go back to reference Lee G, Newman ST, Gard DL, Band H, Panchamoorthy G (1998) Tau interacts with src-family non-receptor tyrosine kinases. J Cell Sci 111:3167–3177PubMed Lee G, Newman ST, Gard DL, Band H, Panchamoorthy G (1998) Tau interacts with src-family non-receptor tyrosine kinases. J Cell Sci 111:3167–3177PubMed
go back to reference Lüth HJ, Ogunlade V, Kuhla B, Kientsch-Engel R, Stahl P, Webster J, Arendt T, Münch G (2005) Age- and stage-dependent accumulation of advanced glycation end products in intracellular deposits in normal and Alzheimer’s disease brains. Cereb Cortex 15:211–220PubMed Lüth HJ, Ogunlade V, Kuhla B, Kientsch-Engel R, Stahl P, Webster J, Arendt T, Münch G (2005) Age- and stage-dependent accumulation of advanced glycation end products in intracellular deposits in normal and Alzheimer’s disease brains. Cereb Cortex 15:211–220PubMed
go back to reference Lyman CP, Chatfield PO (1953) Hibernation and cortical electrical activity in the woodchuck (Marmota monax). Science 117:533–534PubMed Lyman CP, Chatfield PO (1953) Hibernation and cortical electrical activity in the woodchuck (Marmota monax). Science 117:533–534PubMed
go back to reference Lyness SA, Zarow C, Chui HC (2003) Neuron loss in key cholinergic and aminergic nuclei in Alzheimer disease: a meta-analysis. Neurobiol Aging 24(1):1–23PubMed Lyness SA, Zarow C, Chui HC (2003) Neuron loss in key cholinergic and aminergic nuclei in Alzheimer disease: a meta-analysis. Neurobiol Aging 24(1):1–23PubMed
go back to reference MacDonald JA, Storey B (1999) (1999) Regulation of ground squirrel Na+ K+ -ATPase activity by reversible phosphorylation during hibernation. Biochem Biophys Res Commun 254:424–429PubMed MacDonald JA, Storey B (1999) (1999) Regulation of ground squirrel Na+ K+ -ATPase activity by reversible phosphorylation during hibernation. Biochem Biophys Res Commun 254:424–429PubMed
go back to reference Magariños AM, McEwen BS, Saboureau M, Pevet P (2006) Rapid and reversible changes in intrahippocampal connectivity during the course of hibernation in European hamsters. Proc Natl Acad Sci USA 103:18775–18780PubMedCentralPubMed Magariños AM, McEwen BS, Saboureau M, Pevet P (2006) Rapid and reversible changes in intrahippocampal connectivity during the course of hibernation in European hamsters. Proc Natl Acad Sci USA 103:18775–18780PubMedCentralPubMed
go back to reference Malinsky J (1983) Quantitative analysis of morphological changes in the spinal cord of the hibernating bat. Folia Morphologica 31:40–45PubMed Malinsky J (1983) Quantitative analysis of morphological changes in the spinal cord of the hibernating bat. Folia Morphologica 31:40–45PubMed
go back to reference Malinsky J, Malinska J (1975) Changes of the motoneurons and synapses of the spinal cord of the hedgehog during hibernation. In: Proceedings of the Xth International Congress of Anatomists, Tokyo, Japan Malinsky J, Malinska J (1975) Changes of the motoneurons and synapses of the spinal cord of the hedgehog during hibernation. In: Proceedings of the Xth International Congress of Anatomists, Tokyo, Japan
go back to reference Malinsky J, Malinska J (1988) Ultrastructural changes of synapses in supraoptic nucleus of Hedgehog during Hibernation. Acta Universitatis Palackianae Olomucensis 12:117–125 Malinsky J, Malinska J (1988) Ultrastructural changes of synapses in supraoptic nucleus of Hedgehog during Hibernation. Acta Universitatis Palackianae Olomucensis 12:117–125
go back to reference Malinsky J, Polach A (1985) Changes of synaptic apparatus in the brain cortex of the hedgehog during hibernation (a quantitative Golgi and electron microscopic study). Acta Universitatis Palackianae Olomucensis 108:109–115 Malinsky J, Polach A (1985) Changes of synaptic apparatus in the brain cortex of the hedgehog during hibernation (a quantitative Golgi and electron microscopic study). Acta Universitatis Palackianae Olomucensis 108:109–115
go back to reference Massopust LC Jr, Wolin LR, Meder J (1965) Spontaneous electrical activity of the brain in hibernators and nonhibernators during hypothermia. Exp Neurol 12:25–32PubMed Massopust LC Jr, Wolin LR, Meder J (1965) Spontaneous electrical activity of the brain in hibernators and nonhibernators during hypothermia. Exp Neurol 12:25–32PubMed
go back to reference McNaughton BL, Shen J, Rao G, Foster TC, Barnes CA (1994) Persistent increase of hippocampal presynaptic axon excitability after repetitive electrical stimulation: dependence on N-methyl-D-aspartate receptor activity, nitric-oxide synthase, and temperature. Proc Natl Acad Sci USA 91:4830–4834PubMedCentralPubMed McNaughton BL, Shen J, Rao G, Foster TC, Barnes CA (1994) Persistent increase of hippocampal presynaptic axon excitability after repetitive electrical stimulation: dependence on N-methyl-D-aspartate receptor activity, nitric-oxide synthase, and temperature. Proc Natl Acad Sci USA 91:4830–4834PubMedCentralPubMed
go back to reference Michalski A, Wimborne BM, Henry GH (1993) The effect of reversible cooling of cat’s primary visual cortex on the responses of area 21a neurons. J Physiol 466:133–156PubMedCentralPubMed Michalski A, Wimborne BM, Henry GH (1993) The effect of reversible cooling of cat’s primary visual cortex on the responses of area 21a neurons. J Physiol 466:133–156PubMedCentralPubMed
go back to reference Millesi E, Prossinger H, Dittami JP, Fieder M (2001) Hibernation effects on memory in European ground squirrels (Spermophilus citellus). J Biol Rhythms 16:254–271 Millesi E, Prossinger H, Dittami JP, Fieder M (2001) Hibernation effects on memory in European ground squirrels (Spermophilus citellus). J Biol Rhythms 16:254–271
go back to reference Mink JW, Blumenschine RJ, Adams DB (1981) Ratio of central nervous system to body metabolism in vertebrates: its constancy and functional basis. Am J Physiol 241:R203–R212PubMed Mink JW, Blumenschine RJ, Adams DB (1981) Ratio of central nervous system to body metabolism in vertebrates: its constancy and functional basis. Am J Physiol 241:R203–R212PubMed
go back to reference Mondragón-Rodríguez S, Trillaud-Doppia E, Dudilot A, Bourgeois C, Lauzon M, Leclerc N, Boehm J (2012) Interaction of endogenous tau protein with synaptic proteins is regulated by N-methyl-D-aspartate receptor-dependent tau phosphorylation. J Biol Chem 287:32040–32053PubMedCentralPubMed Mondragón-Rodríguez S, Trillaud-Doppia E, Dudilot A, Bourgeois C, Lauzon M, Leclerc N, Boehm J (2012) Interaction of endogenous tau protein with synaptic proteins is regulated by N-methyl-D-aspartate receptor-dependent tau phosphorylation. J Biol Chem 287:32040–32053PubMedCentralPubMed
go back to reference Moser E, Mathiesen I, Andersen P (1993) Association between brain temperature and dentate field potentials in exploring and swimming rats. Science 259:1324–1326PubMed Moser E, Mathiesen I, Andersen P (1993) Association between brain temperature and dentate field potentials in exploring and swimming rats. Science 259:1324–1326PubMed
go back to reference Muller D, Wang C, Skibo G, Toni N, Cremer H, Calaora V, Rougon G, Kiss JZ (1996) PSA-NCAM is required for activity-induced synaptic plasticity. Neuron 17:413–422PubMed Muller D, Wang C, Skibo G, Toni N, Cremer H, Calaora V, Rougon G, Kiss JZ (1996) PSA-NCAM is required for activity-induced synaptic plasticity. Neuron 17:413–422PubMed
go back to reference Murphy JK, O’Connell W, Regan CM (1996) Repetitive and transient increases in hippocampal neural cell adhesion molecule polysialylation state following multitrial spatial training. J Neurochem 67:1268–1274PubMed Murphy JK, O’Connell W, Regan CM (1996) Repetitive and transient increases in hippocampal neural cell adhesion molecule polysialylation state following multitrial spatial training. J Neurochem 67:1268–1274PubMed
go back to reference Ozorio de Almeida M (1943) Investigation of epileptiform attacks produced by sudden cooling of frog spinal cord. J Neurophysiol 6:73–80 Ozorio de Almeida M (1943) Investigation of epileptiform attacks produced by sudden cooling of frog spinal cord. J Neurophysiol 6:73–80
go back to reference Palop JJ, Mucke L (2010) Amyloid-beta-induced neuronal dysfunction in Alzheimer’s disease: from synapses toward neural networks. Nat Neurosci 13:812–818PubMedCentralPubMed Palop JJ, Mucke L (2010) Amyloid-beta-induced neuronal dysfunction in Alzheimer’s disease: from synapses toward neural networks. Nat Neurosci 13:812–818PubMedCentralPubMed
go back to reference Piña-Crespo JC, Daló NL (2006) Activity of common anticonvulsant drugs on spinal seizure-induced by sudden cooling. Prog Neuropsychopharmacol Biol Psychiatry 30:1202–1208PubMed Piña-Crespo JC, Daló NL (2006) Activity of common anticonvulsant drugs on spinal seizure-induced by sudden cooling. Prog Neuropsychopharmacol Biol Psychiatry 30:1202–1208PubMed
go back to reference Popov VI, Bocharova LS (1992) Hibernation-induced structural changes in synaptic contacts between mossy fibres and hippocampal pyramidal neurons. Neuroscience 48:53–62PubMed Popov VI, Bocharova LS (1992) Hibernation-induced structural changes in synaptic contacts between mossy fibres and hippocampal pyramidal neurons. Neuroscience 48:53–62PubMed
go back to reference Popov VI, Bocharova LS, Bragin AG (1992) Repeated changes of dendritic morphology in the hippocampus of ground squirrels in the course of hibernation. Neuroscience 48:45–51PubMed Popov VI, Bocharova LS, Bragin AG (1992) Repeated changes of dendritic morphology in the hippocampus of ground squirrels in the course of hibernation. Neuroscience 48:45–51PubMed
go back to reference Reiman EM, Caselli RJ, Yun LS, Chen K, Bandy D, Minoshima S, Thibodeau SN, Osborne D (1996) Preclinical evidence of Alzheimer’s disease in persons homozygous for the epsilon 4 allele for apolipoprotein E. N Engl J Med 334:752–758PubMed Reiman EM, Caselli RJ, Yun LS, Chen K, Bandy D, Minoshima S, Thibodeau SN, Osborne D (1996) Preclinical evidence of Alzheimer’s disease in persons homozygous for the epsilon 4 allele for apolipoprotein E. N Engl J Med 334:752–758PubMed
go back to reference Reiman EM, Chen K, Alexander GE, Caselli RJ, Bandy D, Osborne D, Saunders AM, Hardy J (2004) Functional brain abnormalities in young adults at genetic risk for late-onset Alzheimer’s dementia. Proc Natl Acad Sci USA 101:284–289PubMedCentralPubMed Reiman EM, Chen K, Alexander GE, Caselli RJ, Bandy D, Osborne D, Saunders AM, Hardy J (2004) Functional brain abnormalities in young adults at genetic risk for late-onset Alzheimer’s dementia. Proc Natl Acad Sci USA 101:284–289PubMedCentralPubMed
go back to reference Roberson ED, Scearce-Levie K, Palop JJ, Yan F, Cheng IH, Wu T, Gerstein H, Yu GQ, Mucke L (2007) Reducing endogenous tau ameliorates amyloid beta-induced deficits in an Alzheimer’s disease mouse model. Science 316:750–754PubMed Roberson ED, Scearce-Levie K, Palop JJ, Yan F, Cheng IH, Wu T, Gerstein H, Yu GQ, Mucke L (2007) Reducing endogenous tau ameliorates amyloid beta-induced deficits in an Alzheimer’s disease mouse model. Science 316:750–754PubMed
go back to reference Roberson ED, Halabisky B, Yoo JW, Yao J, Chin J, Yan F, Wu T, Hamto P, Devidze N, Yu GQ, Palop JJ, Noebels JL, Mucke L (2011) Amyloid-β/Fyn-induced synaptic, network, and cognitive impairments depend on tau levels in multiple mouse models of Alzheimer’s disease. J Neurosci 31:700–711PubMedCentralPubMed Roberson ED, Halabisky B, Yoo JW, Yao J, Chin J, Yan F, Wu T, Hamto P, Devidze N, Yu GQ, Palop JJ, Noebels JL, Mucke L (2011) Amyloid-β/Fyn-induced synaptic, network, and cognitive impairments depend on tau levels in multiple mouse models of Alzheimer’s disease. J Neurosci 31:700–711PubMedCentralPubMed
go back to reference Ruediger J, Van der Zee EA, Strijkstra AM, Aschoff A, Daan S, Hut RA (2007) Dynamics in the ultrastructure of asymmetric axospinous synapses in the frontal cortex of hibernating European ground squirrels (Spermophilus citellus). Synapse 61:343–352PubMed Ruediger J, Van der Zee EA, Strijkstra AM, Aschoff A, Daan S, Hut RA (2007) Dynamics in the ultrastructure of asymmetric axospinous synapses in the frontal cortex of hibernating European ground squirrels (Spermophilus citellus). Synapse 61:343–352PubMed
go back to reference Sadik G, Tanaka T, Kato K, Yamamori H, Nessa BN, Morihara T, Takeda M (2009) Phosphorylation of tau at Ser214 mediates its interaction with 14-3-3 protein: implications for the mechanism of tau aggregation. J Neurochem 108:33–43PubMed Sadik G, Tanaka T, Kato K, Yamamori H, Nessa BN, Morihara T, Takeda M (2009) Phosphorylation of tau at Ser214 mediates its interaction with 14-3-3 protein: implications for the mechanism of tau aggregation. J Neurochem 108:33–43PubMed
go back to reference Samsonov A, Yu JZ, Rasenick M, Popov SV (2004) Tau interaction with microtubules in vivo. J Cell Sci 117:6129–6141PubMed Samsonov A, Yu JZ, Rasenick M, Popov SV (2004) Tau interaction with microtubules in vivo. J Cell Sci 117:6129–6141PubMed
go back to reference Schubert M, Brazil DP, Burks DJ, Kushner JA, Ye J, Flint CL, Farhang-Fallah J, Dikkes P, Warot XM, Rio C, Corfas G, White MF (2003) Insulin receptor substrate-2 deficiency impairs brain growth and promotes tau phosphorylation. J Neurosci 23:7084–7092PubMed Schubert M, Brazil DP, Burks DJ, Kushner JA, Ye J, Flint CL, Farhang-Fallah J, Dikkes P, Warot XM, Rio C, Corfas G, White MF (2003) Insulin receptor substrate-2 deficiency impairs brain growth and promotes tau phosphorylation. J Neurosci 23:7084–7092PubMed
go back to reference Schubert M, Gautam D, Surjo D, Ueki K, Baudler S, Schubert D, Kondo T, Alber J, Galldiks N, Küstermann E, Arndt S, Jacobs AH, Krone W, Kahn CR, Brüning JC (2004) Role for neuronal insulin resistance in neurodegenerative diseases. Proc Natl Acad Sci USA 101:3100–3105PubMedCentralPubMed Schubert M, Gautam D, Surjo D, Ueki K, Baudler S, Schubert D, Kondo T, Alber J, Galldiks N, Küstermann E, Arndt S, Jacobs AH, Krone W, Kahn CR, Brüning JC (2004) Role for neuronal insulin resistance in neurodegenerative diseases. Proc Natl Acad Sci USA 101:3100–3105PubMedCentralPubMed
go back to reference Seki T, Arai Y (1999a) Different polysialic acid-neural cell adhesion molecule expression patterns in distinct types of mossy fiber boutons in the adult hippocampus. J Comp Neurol 410:115–125PubMed Seki T, Arai Y (1999a) Different polysialic acid-neural cell adhesion molecule expression patterns in distinct types of mossy fiber boutons in the adult hippocampus. J Comp Neurol 410:115–125PubMed
go back to reference Seki T, Arai Y (1999b) Distribution and possible roles of the highly polysialylated neural cell adhesion molecule (NCAM-H) in the developing and adult central nervous system. Neurosci Res 17:265–290 Seki T, Arai Y (1999b) Distribution and possible roles of the highly polysialylated neural cell adhesion molecule (NCAM-H) in the developing and adult central nervous system. Neurosci Res 17:265–290
go back to reference Shchipakina TG, Zharikova AD, Arkhipov VI (1995) Protein phosphorylation of synaptic membranes isolated from the brain of ground squirrels during hibernation. Neuro Report 7:278–280 Shchipakina TG, Zharikova AD, Arkhipov VI (1995) Protein phosphorylation of synaptic membranes isolated from the brain of ground squirrels during hibernation. Neuro Report 7:278–280
go back to reference Shipton OA, Leitz JR, Dworzak J, Acton CE, Tunbridge EM, Denk F, Dawson HN, Vitek MP, Wade-Martins R, Paulsen O, Vargas-Caballero M (2011) Tau protein is required for amyloid beta-induced impairment of hippocampal long-term potentiation. J Neurosci 31:1688–1692PubMed Shipton OA, Leitz JR, Dworzak J, Acton CE, Tunbridge EM, Denk F, Dawson HN, Vitek MP, Wade-Martins R, Paulsen O, Vargas-Caballero M (2011) Tau protein is required for amyloid beta-induced impairment of hippocampal long-term potentiation. J Neurosci 31:1688–1692PubMed
go back to reference Small GW, Ercoli LM, Silverman DH, Huang SC, Komo S, Bookheimer SY, Lavretsky H, Miller K, Siddarth P, Rasgon NL, Mazziotta JC, Saxena S, Wu HM, Mega MS, Cummings JL, Saunders AM, Pericak-Vance MA, Roses AD, Barrio JR, Phelps ME (2000) Cerebral metabolic and cognitive decline in persons at genetic risk for Alzheimer’s disease. Proc Natl Acad Sci USA 97:6037–6042PubMedCentralPubMed Small GW, Ercoli LM, Silverman DH, Huang SC, Komo S, Bookheimer SY, Lavretsky H, Miller K, Siddarth P, Rasgon NL, Mazziotta JC, Saxena S, Wu HM, Mega MS, Cummings JL, Saunders AM, Pericak-Vance MA, Roses AD, Barrio JR, Phelps ME (2000) Cerebral metabolic and cognitive decline in persons at genetic risk for Alzheimer’s disease. Proc Natl Acad Sci USA 97:6037–6042PubMedCentralPubMed
go back to reference Sperling RA, Aisen PS, Beckett LA, Bennett DA, Craft S, Fagan AM, Iwatsubo T, Jack CR Jr, Kaye J, Montine TJ, Park DC, Reiman EM, Rowe CC, Siemers E, Stern Y, Yaffe K, Carrillo MC, Thies B, Morrison-Bogorad M, Wagster MV, Phelps CH (2011) Toward defining the preclinical stages of Alzheimer’s disease: recommendations from the National Institute on Aging-Alzheimer’s Association workgroups on diagnostic guidelines for Alzheimer’s disease. Alzheimers Dement 7:280–292PubMedCentralPubMed Sperling RA, Aisen PS, Beckett LA, Bennett DA, Craft S, Fagan AM, Iwatsubo T, Jack CR Jr, Kaye J, Montine TJ, Park DC, Reiman EM, Rowe CC, Siemers E, Stern Y, Yaffe K, Carrillo MC, Thies B, Morrison-Bogorad M, Wagster MV, Phelps CH (2011) Toward defining the preclinical stages of Alzheimer’s disease: recommendations from the National Institute on Aging-Alzheimer’s Association workgroups on diagnostic guidelines for Alzheimer’s disease. Alzheimers Dement 7:280–292PubMedCentralPubMed
go back to reference Stieler JT, Boerema AS, Bullmann T, Kohl F, Strijkstra AM, Barnes BM, Arendt T (2008) Activity state profile of tau kinases in hibernating animals. In: Lovegrove BG, McKechnie AE (eds) Hypometabolism in animals: hibernation, torpor and cryobiology. University of KwaZulu-Natal, Pietermaritzburg, pp 133–142 Stieler JT, Boerema AS, Bullmann T, Kohl F, Strijkstra AM, Barnes BM, Arendt T (2008) Activity state profile of tau kinases in hibernating animals. In: Lovegrove BG, McKechnie AE (eds) Hypometabolism in animals: hibernation, torpor and cryobiology. University of KwaZulu-Natal, Pietermaritzburg, pp 133–142
go back to reference Stieler JT, Bullmann T, Kohl F, Barnes BM, Arendt T (2009) PHF-like tau phosphorylation in mammalian hibernation is not associated with p25-formation. J Neural Transm 116:345–350PubMed Stieler JT, Bullmann T, Kohl F, Barnes BM, Arendt T (2009) PHF-like tau phosphorylation in mammalian hibernation is not associated with p25-formation. J Neural Transm 116:345–350PubMed
go back to reference Storey KB (1987) Regulation of liver metabolism by enzyme phosphorylation during mammalian hibernation. J Biol Chem 262:1670–1673PubMed Storey KB (1987) Regulation of liver metabolism by enzyme phosphorylation during mammalian hibernation. J Biol Chem 262:1670–1673PubMed
go back to reference Strijkstra AM, Daan S (1998) Dissimilarity of slow-wave activity enhancement by torpor and sleep deprivation in a hibernator. Am J Physiol 275:R1110–R1117PubMed Strijkstra AM, Daan S (1998) Dissimilarity of slow-wave activity enhancement by torpor and sleep deprivation in a hibernator. Am J Physiol 275:R1110–R1117PubMed
go back to reference Strijkstra AM, Hut RA, de Wilde MC, Stieler J, Van der Zee EA (2003) Hippocampal synaptophysin immunoreactivity is reduced during natural hypothermia in ground squirrels. Neurosci Lett 344:29–32PubMed Strijkstra AM, Hut RA, de Wilde MC, Stieler J, Van der Zee EA (2003) Hippocampal synaptophysin immunoreactivity is reduced during natural hypothermia in ground squirrels. Neurosci Lett 344:29–32PubMed
go back to reference Swaab DF, Dubelaar EJ, Scherder EJ, van Someren EJ, Verwer RW (2003) Therapeutic strategies for Alzheimer disease: focus on neuronal reactivation of metabolically impaired neurons. Alzheimer Dis Assoc Disord 17(Suppl 4):S114–S122PubMed Swaab DF, Dubelaar EJ, Scherder EJ, van Someren EJ, Verwer RW (2003) Therapeutic strategies for Alzheimer disease: focus on neuronal reactivation of metabolically impaired neurons. Alzheimer Dis Assoc Disord 17(Suppl 4):S114–S122PubMed
go back to reference Tackenberg C, Brandt R (2009) Divergent pathways mediate spine alterations and cell death induced by amyloid-beta, wild-type tau, and R406 W tau. J Neurosci 29:14439–14450PubMed Tackenberg C, Brandt R (2009) Divergent pathways mediate spine alterations and cell death induced by amyloid-beta, wild-type tau, and R406 W tau. J Neurosci 29:14439–14450PubMed
go back to reference Takei Y, Teng J, Harada A, Hirokawa N (2000) Defects in axonal elongation and neuronal migration in mice with disrupted tau and map1b genes. J Cell Biol 150:989–1000PubMedCentralPubMed Takei Y, Teng J, Harada A, Hirokawa N (2000) Defects in axonal elongation and neuronal migration in mice with disrupted tau and map1b genes. J Cell Biol 150:989–1000PubMedCentralPubMed
go back to reference Volgushev M, Vidyasagar TR, Chistiakova M, Eysel UT (2000) Synaptic transmission in the neocortex during reversible cooling. Neuroscience 98:9–22PubMed Volgushev M, Vidyasagar TR, Chistiakova M, Eysel UT (2000) Synaptic transmission in the neocortex during reversible cooling. Neuroscience 98:9–22PubMed
go back to reference von der Ohe CG, Darian-Smith C, Garner CC, Heller HC (2006) Ubiquitous and temperature-dependent neural plasticity in hibernators. J Neurosci 26:10590–10598PubMed von der Ohe CG, Darian-Smith C, Garner CC, Heller HC (2006) Ubiquitous and temperature-dependent neural plasticity in hibernators. J Neurosci 26:10590–10598PubMed
go back to reference von der Ohe CG, Garner CC, Darian-Smith C, Heller HC (2007) Synaptic protein dynamics in hibernation. J Neurosci 27(8):4–92 von der Ohe CG, Garner CC, Darian-Smith C, Heller HC (2007) Synaptic protein dynamics in hibernation. J Neurosci 27(8):4–92
go back to reference Walaas SI, Greengard P (1991) Protein phosphorylation and neuronal function. Pharmacol Rev 43:299–349PubMed Walaas SI, Greengard P (1991) Protein phosphorylation and neuronal function. Pharmacol Rev 43:299–349PubMed
go back to reference Walker JM, Glotzbach SF, Berger RJ, Heller HC (1977) Sleep and hibernation in ground squirrels: electrophysiological observations. Am J Physiol 233:213–221 Walker JM, Glotzbach SF, Berger RJ, Heller HC (1977) Sleep and hibernation in ground squirrels: electrophysiological observations. Am J Physiol 233:213–221
go back to reference Wang LCH (1978) Energetic and field aspects of mammalian torpor: the Richardson’s ground squirrel. Strategies in cold: natural torpidity and thermogenesis. Academic, New York, pp 109–145 Wang LCH (1978) Energetic and field aspects of mammalian torpor: the Richardson’s ground squirrel. Strategies in cold: natural torpidity and thermogenesis. Academic, New York, pp 109–145
go back to reference Weingarten MD, Lockwood AH, Hwo SY, Kirschner MW (1975) A protein factor essential for microtubule assembly. Proc Natl Acad Sci USA 72:1858–1862PubMedCentralPubMed Weingarten MD, Lockwood AH, Hwo SY, Kirschner MW (1975) A protein factor essential for microtubule assembly. Proc Natl Acad Sci USA 72:1858–1862PubMedCentralPubMed
go back to reference Weissmann C, Reyher HJ, Gauthier A, Steinhoff HJ, Junge W, Brandt R (2009) Microtubule binding and trapping at the tip of neurites regulate tau motion in living neurons. Traffic 10:1655–1668PubMed Weissmann C, Reyher HJ, Gauthier A, Steinhoff HJ, Junge W, Brandt R (2009) Microtubule binding and trapping at the tip of neurites regulate tau motion in living neurons. Traffic 10:1655–1668PubMed
go back to reference Zhou F, Zhu X, Castellani RJ, Stimmelmayr R, Perry G, Smith MA, Drew KL (2001) Hibernation, a model of neuroprotection. Am J Pathol 158:2145–2151PubMedCentralPubMed Zhou F, Zhu X, Castellani RJ, Stimmelmayr R, Perry G, Smith MA, Drew KL (2001) Hibernation, a model of neuroprotection. Am J Pathol 158:2145–2151PubMedCentralPubMed
Metadata
Title
Brain hypometabolism triggers PHF-like phosphorylation of tau, a major hallmark of Alzheimer’s disease pathology
Authors
Thomas Arendt
Jens Stieler
Max Holzer
Publication date
01-04-2015
Publisher
Springer Vienna
Published in
Journal of Neural Transmission / Issue 4/2015
Print ISSN: 0300-9564
Electronic ISSN: 1435-1463
DOI
https://doi.org/10.1007/s00702-014-1342-8

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