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Published in: International Journal of Legal Medicine 4/2009

01-07-2009 | Original Article

Determining time of death: temperature-dependent postmortem changes in calcineurin A, MARCKS, CaMKII, and protein phosphatase 2A in mouse

Authors: Yekaterina O. Poloz, Danton H. O’Day

Published in: International Journal of Legal Medicine | Issue 4/2009

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Abstract

While the determination of postmortem interval (PMI) is a crucial and fundamental step in any death investigation, the development of appropriate biochemical methods for PMI estimation is still in its infancy. This study focused on the temperature-dependent postmortem degradation of calcineurin A (CnA), calmodulin-dependent kinase II (CaMKII), myristoylated alanine-rich C-kinase substrate (MARCKs), and protein phosphatase 2A (PP2A) in mice. The results show that MARCKS, CaMKII, and the use of lung tissue do not appear to warrant further study for the determination of PMI in humans. In skeletal muscle, CnA underwent a rapid temperature-dependent cleavage (60 → 57 kDa) over the first 48 h of postmortem interval. At 21°C, this transformation was completed within 24 h. In contrast, PP2A increased within the first 24 h after which it degraded at 21°C but remained stable for up to 96 h at 5°C and 10°C. The 60 → 57 kDa postmortem conversion of CnA was inhibited by addition of protease inhibitors and MDL-28170 indicating a calpain pathway mediates this breakdown. Proteasome inhibition (MG-132) and calmodulin antagonism (calmidazolium) also inhibited this conversion suggesting that other protein degradation pathways also are in play. In contrast, all of the protease inhibitors and calmidazolium but not ethylene glycol tetraacetic acid led to increased levels of PP2A. The data are discussed in terms of developing a useable field-based biochemical assay for postmortem interval determination in humans and understanding the protein degradation pathways that are initiated upon death.
Literature
1.
go back to reference Pounder DJ (1995) Postmortem changes and time of death. Department of Forensic Medicine, University of Dunde, Dunde Pounder DJ (1995) Postmortem changes and time of death. Department of Forensic Medicine, University of Dunde, Dunde
2.
go back to reference Hayashi T, Ishida Y, Mizunuma S, Kimura A, Kondo T (2008) Differential diagnosis between freshwater drowning and saltwater drowning based on intrapulmonary aquaporin-5 expression. Int J Legal Med 123:7–13PubMedCrossRef Hayashi T, Ishida Y, Mizunuma S, Kimura A, Kondo T (2008) Differential diagnosis between freshwater drowning and saltwater drowning based on intrapulmonary aquaporin-5 expression. Int J Legal Med 123:7–13PubMedCrossRef
3.
go back to reference Kang S, Kassam N, Gauthier ML, O’Day DH (2003) Post-mortem changes in calmodulin binding proteins in muscle and lung. Forensic Sci Int 131:140–147PubMedCrossRef Kang S, Kassam N, Gauthier ML, O’Day DH (2003) Post-mortem changes in calmodulin binding proteins in muscle and lung. Forensic Sci Int 131:140–147PubMedCrossRef
4.
go back to reference Bauer M, Gramlich I, Polzin S, Patzelt D (2003) Quantification of mRNA degradation as possible indicator of postmortem interval-a pilot study. Legal Med 5:220–227PubMedCrossRef Bauer M, Gramlich I, Polzin S, Patzelt D (2003) Quantification of mRNA degradation as possible indicator of postmortem interval-a pilot study. Legal Med 5:220–227PubMedCrossRef
5.
go back to reference Yi S-H, Zhao X-H, Liu L (2008) Selection of parameters to infer postmortem interval by detecting DNA degradation using comet assay. Chinese J Forensic Med 23:1–4 Yi S-H, Zhao X-H, Liu L (2008) Selection of parameters to infer postmortem interval by detecting DNA degradation using comet assay. Chinese J Forensic Med 23:1–4
6.
go back to reference Tao T, Xu J, Luo T-X, Liao Z-G, Pan H-F (2006) Contents of vitreous humor of dead body with different postmortem intervals. J Sichuan Univ 37:898–900 Tao T, Xu J, Luo T-X, Liao Z-G, Pan H-F (2006) Contents of vitreous humor of dead body with different postmortem intervals. J Sichuan Univ 37:898–900
7.
go back to reference Wehner F, Wehner HD, Schieffer MC, Subke J (1999) Delimitation of the time of death by immunohistochemical detection of insulin in pancreatic β-cells. Forensic Sci Int 105:161–169PubMedCrossRef Wehner F, Wehner HD, Schieffer MC, Subke J (1999) Delimitation of the time of death by immunohistochemical detection of insulin in pancreatic β-cells. Forensic Sci Int 105:161–169PubMedCrossRef
8.
go back to reference Neis P, Hille R, Paschke M, Pilwat G, Schnabel A, Neiss C, Bratzke H (1999) Strontium90 for determination of time since death. Forensic Sci Int 99:47–51PubMedCrossRef Neis P, Hille R, Paschke M, Pilwat G, Schnabel A, Neiss C, Bratzke H (1999) Strontium90 for determination of time since death. Forensic Sci Int 99:47–51PubMedCrossRef
10.
go back to reference Takeichim S, Tokunaga I, Yoshima K, Maeiwa M, Bando Y, Kominami E, Katunuma N (1984) Mechanism of postmortem autolysis of skeletal muscle. Biochem Med 32:341–348CrossRef Takeichim S, Tokunaga I, Yoshima K, Maeiwa M, Bando Y, Kominami E, Katunuma N (1984) Mechanism of postmortem autolysis of skeletal muscle. Biochem Med 32:341–348CrossRef
12.
go back to reference Cohen P, Klee CB (1988) Calmodulin. Elsevier, Amsterdam Cohen P, Klee CB (1988) Calmodulin. Elsevier, Amsterdam
13.
go back to reference Geesink GH, Kuchay S, Chishti AH, Koohmaraie M (2006) μ-Calpain is essential for postmortem proteolysis of muscle proteins. J Anim Sci 84:2834–2840PubMedCrossRef Geesink GH, Kuchay S, Chishti AH, Koohmaraie M (2006) μ-Calpain is essential for postmortem proteolysis of muscle proteins. J Anim Sci 84:2834–2840PubMedCrossRef
14.
go back to reference Sorimachi Y, Harada K, Yoshida K-I (1996) Involvement of calpain in postmortem proteolysis in the rat brain. Forensic Sci Int 81:165–174PubMedCrossRef Sorimachi Y, Harada K, Yoshida K-I (1996) Involvement of calpain in postmortem proteolysis in the rat brain. Forensic Sci Int 81:165–174PubMedCrossRef
15.
go back to reference Geesink GH, Koohmaraie M (1999) Effect of calpastatin on degradation of myofibrillar proteins by μ-calpain under postmortem conditions. J Anim Sci 77:2685–2692PubMed Geesink GH, Koohmaraie M (1999) Effect of calpastatin on degradation of myofibrillar proteins by μ-calpain under postmortem conditions. J Anim Sci 77:2685–2692PubMed
16.
go back to reference Johnson GVW, Greenwood JA, Costello AC, Troncoso JC (1991) The regulatory role of calmodulin in the proteolysis of individual neurofilament proteins by calpain. Neurochem Res 16:869–873PubMedCrossRef Johnson GVW, Greenwood JA, Costello AC, Troncoso JC (1991) The regulatory role of calmodulin in the proteolysis of individual neurofilament proteins by calpain. Neurochem Res 16:869–873PubMedCrossRef
17.
go back to reference Morioka M, Hamada J-I, Ushio Y, Miyamoto E (1999) Potential role of calcineurin for brain ischemia and traumatic injury. Prog Neurobiol 58:1–30PubMedCrossRef Morioka M, Hamada J-I, Ushio Y, Miyamoto E (1999) Potential role of calcineurin for brain ischemia and traumatic injury. Prog Neurobiol 58:1–30PubMedCrossRef
18.
go back to reference Wu H-Y, Tomizawa K, Oda Y et al (2004) Critical role of calpain-mediated cleavage of calcineurin in excitotoxic neurodegeneration. J Biol Chem 279:4929–44940PubMedCrossRef Wu H-Y, Tomizawa K, Oda Y et al (2004) Critical role of calpain-mediated cleavage of calcineurin in excitotoxic neurodegeneration. J Biol Chem 279:4929–44940PubMedCrossRef
19.
go back to reference Shibasaki F, McKeon F (1995) Calcineurin functions in Ca (2+)-activated cell death in mammalian cells. J Cell Biol 131:735–743PubMedCrossRef Shibasaki F, McKeon F (1995) Calcineurin functions in Ca (2+)-activated cell death in mammalian cells. J Cell Biol 131:735–743PubMedCrossRef
20.
go back to reference Liu F, Grundke-Iqbal I, Iqbal K, Oda Y, Tomizawa K, Gong C-X (2005) Truncation and activation of calcineurin A by calpain I in Alzheimer disease brain. J Biol Chem 280:37755–37762PubMedCrossRef Liu F, Grundke-Iqbal I, Iqbal K, Oda Y, Tomizawa K, Gong C-X (2005) Truncation and activation of calcineurin A by calpain I in Alzheimer disease brain. J Biol Chem 280:37755–37762PubMedCrossRef
21.
go back to reference Shioda N, Moriguchi S, Shirasaki Y, Fukunaga K (2006) Generation of constitutively active calcineurin by calpain contributes to delayed neuronal death following mouse brain ischemia. J Neurochem 98:310–320PubMedCrossRef Shioda N, Moriguchi S, Shirasaki Y, Fukunaga K (2006) Generation of constitutively active calcineurin by calpain contributes to delayed neuronal death following mouse brain ischemia. J Neurochem 98:310–320PubMedCrossRef
22.
go back to reference Taniguchi S, Fujita Y, Hayashi S et al (2001) Calpain-mediated degradation of p35 to p25 in postmortem human and rat brains. FEBS Lett 489:46–50PubMedCrossRef Taniguchi S, Fujita Y, Hayashi S et al (2001) Calpain-mediated degradation of p35 to p25 in postmortem human and rat brains. FEBS Lett 489:46–50PubMedCrossRef
23.
go back to reference Sanoudou D, Kang PB, Haslett JN, Han M, Kunkel LM, Beggs AH (2004) Transcriptional profile of postmortem skeletal muscle. Physiol Genomics 16:222–228PubMed Sanoudou D, Kang PB, Haslett JN, Han M, Kunkel LM, Beggs AH (2004) Transcriptional profile of postmortem skeletal muscle. Physiol Genomics 16:222–228PubMed
24.
go back to reference Fountoulakis M, Hardmeier R, Hoger H, Lubec G (2001) Postmortem changes in the level of brain protein. Exp Neurol 167:86–91PubMedCrossRef Fountoulakis M, Hardmeier R, Hoger H, Lubec G (2001) Postmortem changes in the level of brain protein. Exp Neurol 167:86–91PubMedCrossRef
25.
go back to reference Geesink GH, Koohmaraie M (1999) Postmortem proteolysis and calpain/calpastatin activity in callipyge and normal lamb biceps femoris during extended postmortem storage. J Anim Sci 77:1490–1501PubMed Geesink GH, Koohmaraie M (1999) Postmortem proteolysis and calpain/calpastatin activity in callipyge and normal lamb biceps femoris during extended postmortem storage. J Anim Sci 77:1490–1501PubMed
26.
go back to reference Sabucedo AJ, Furton KG (2003) Estimation of postmortem interval using the protein cardiac troponin I. Forensic Sci Int 134:11–16PubMedCrossRef Sabucedo AJ, Furton KG (2003) Estimation of postmortem interval using the protein cardiac troponin I. Forensic Sci Int 134:11–16PubMedCrossRef
27.
go back to reference Xiao JH, Chen YC (2005) A study on the postmortem relationship between the degradation of protein and the postmortem interval. Fa Yi Xue Za Zhi 21:110–112PubMed Xiao JH, Chen YC (2005) A study on the postmortem relationship between the degradation of protein and the postmortem interval. Fa Yi Xue Za Zhi 21:110–112PubMed
28.
go back to reference Liu Y, Kuai J-X, Zhang Y-W, Wang Y-Y (2008) The relationship between the degradation of actin and the postmortem interval in rats. J Forensic Med 24:165–167 Liu Y, Kuai J-X, Zhang Y-W, Wang Y-Y (2008) The relationship between the degradation of actin and the postmortem interval in rats. J Forensic Med 24:165–167
29.
go back to reference Kuai J-X, Liu Y, Zhang Y-W (2008) A study on the relationship between the degradation of tubulin in cardiac muscle and lung of rat and the postmortem interval. Chinese J Forensic Med 23:96–98 Kuai J-X, Liu Y, Zhang Y-W (2008) A study on the relationship between the degradation of tubulin in cardiac muscle and lung of rat and the postmortem interval. Chinese J Forensic Med 23:96–98
30.
go back to reference Kitamura N, Nishino N, Hashimoto T et al (1998) Asymmetrical changes in the fodrin α subunit in the superior temporal cortices in schizophrenia. Biol Psychiatry 43:254–262PubMedCrossRef Kitamura N, Nishino N, Hashimoto T et al (1998) Asymmetrical changes in the fodrin α subunit in the superior temporal cortices in schizophrenia. Biol Psychiatry 43:254–262PubMedCrossRef
31.
go back to reference Li J, Gould TD, Yuan P, Manji HK, Chen G (2003) Post-mortem interval effects on the phosphorylation of signaling proteins. Neuropsychopharmacology 28:1017–1025PubMedCrossRef Li J, Gould TD, Yuan P, Manji HK, Chen G (2003) Post-mortem interval effects on the phosphorylation of signaling proteins. Neuropsychopharmacology 28:1017–1025PubMedCrossRef
32.
go back to reference Zolk O, Schenke C, Sarikas A (2006) The ubiquitin-proteasome system: focus on the heart. Cardiovasc Res 70:410–421PubMedCrossRef Zolk O, Schenke C, Sarikas A (2006) The ubiquitin-proteasome system: focus on the heart. Cardiovasc Res 70:410–421PubMedCrossRef
33.
go back to reference Rastogi S, Sentex E, Elimban V, Dhalla NS, Netticadan T (2003) Elevated levels of protein phosphatase 1 and phosphatase 2A may contribute to cardiac dysfunction in diabetes. Biochim Biophys Acta 1638:271–277 Rastogi S, Sentex E, Elimban V, Dhalla NS, Netticadan T (2003) Elevated levels of protein phosphatase 1 and phosphatase 2A may contribute to cardiac dysfunction in diabetes. Biochim Biophys Acta 1638:271–277
34.
go back to reference Althaus L, Stuckradt S, Henbge C, Bajanowski T (2007) Cooling experiments using dummies covered by leaves. Int J Legal Med 121:112–114PubMedCrossRef Althaus L, Stuckradt S, Henbge C, Bajanowski T (2007) Cooling experiments using dummies covered by leaves. Int J Legal Med 121:112–114PubMedCrossRef
Metadata
Title
Determining time of death: temperature-dependent postmortem changes in calcineurin A, MARCKS, CaMKII, and protein phosphatase 2A in mouse
Authors
Yekaterina O. Poloz
Danton H. O’Day
Publication date
01-07-2009
Publisher
Springer-Verlag
Published in
International Journal of Legal Medicine / Issue 4/2009
Print ISSN: 0937-9827
Electronic ISSN: 1437-1596
DOI
https://doi.org/10.1007/s00414-009-0343-x

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