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Published in: Journal of Inherited Metabolic Disease 6/2018

01-11-2018 | Glycogen Storage Disease

Sirtuin signaling controls mitochondrial function in glycogen storage disease type Ia

Authors: Jun-Ho Cho, Goo-Young Kim, Brian C. Mansfield, Janice Y. Chou

Published in: Journal of Inherited Metabolic Disease | Issue 6/2018

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Abstract

Glycogen storage disease type Ia (GSD-Ia) deficient in glucose-6-phosphatase-α (G6Pase-α) is a metabolic disorder characterized by impaired glucose homeostasis and a long-term complication of hepatocellular adenoma/carcinoma (HCA/HCC). Mitochondrial dysfunction has been implicated in GSD-Ia but the underlying mechanism and its contribution to HCA/HCC development remain unclear. We have shown that hepatic G6Pase-α deficiency leads to downregulation of sirtuin 1 (SIRT1) signaling that underlies defective hepatic autophagy in GSD-Ia. SIRT1 is a NAD+-dependent deacetylase that can deacetylate and activate peroxisome proliferator-activated receptor-γ coactivator 1α (PGC-1α), a master regulator of mitochondrial integrity, biogenesis, and function. We hypothesized that downregulation of hepatic SIRT1 signaling in G6Pase-α-deficient livers impairs PGC-1α activity, leading to mitochondrial dysfunction. Here we show that the G6Pase-α-deficient livers display defective PGC-1α signaling, reduced numbers of functional mitochondria, and impaired oxidative phosphorylation. Overexpression of hepatic SIRT1 restores PGC-1α activity, normalizes the expression of electron transport chain components, and increases mitochondrial complex IV activity. We have previously shown that restoration of hepatic G6Pase-α expression normalized SIRT1 signaling. We now show that restoration of hepatic G6Pase-α expression also restores PGC-1α activity and mitochondrial function. Finally, we show that HCA/HCC lesions found in G6Pase-α-deficient livers contain marked mitochondrial and oxidative DNA damage. Taken together, our study shows that downregulation of hepatic SIRT1/PGC-1α signaling underlies mitochondrial dysfunction and that oxidative DNA damage incurred by damaged mitochondria may contribute to HCA/HCC development in GSD-Ia.
Literature
go back to reference Ashrafi G, Schwarz TL (2013) The pathways of mitophagy for quality control and clearance of mitochondria. Cell Death Differ 20:31–42CrossRefPubMed Ashrafi G, Schwarz TL (2013) The pathways of mitophagy for quality control and clearance of mitochondria. Cell Death Differ 20:31–42CrossRefPubMed
go back to reference Austin S, St-Pierre J (2012) PGC1alpha and mitochondrial metabolism--emerging concepts and relevance in ageing and neurodegenerative disorders. J Cell Sci 125:4963–4971CrossRefPubMed Austin S, St-Pierre J (2012) PGC1alpha and mitochondrial metabolism--emerging concepts and relevance in ageing and neurodegenerative disorders. J Cell Sci 125:4963–4971CrossRefPubMed
go back to reference Cho JH, Kim GY, Pan CJ et al (2017) Downregulation of SIRT1 signaling underlies hepatic autophagy impairment in glycogen storage disease type Ia. PLoS Genet 13:e1006819CrossRefPubMedPubMedCentral Cho JH, Kim GY, Pan CJ et al (2017) Downregulation of SIRT1 signaling underlies hepatic autophagy impairment in glycogen storage disease type Ia. PLoS Genet 13:e1006819CrossRefPubMedPubMedCentral
go back to reference Chou JY, Matern D, Mansfield BC, Chen YT (2002) Type I glycogen storage diseases: disorders of the glucose-6-phosphatase complex. Curr Mol Med 2:121–143CrossRefPubMed Chou JY, Matern D, Mansfield BC, Chen YT (2002) Type I glycogen storage diseases: disorders of the glucose-6-phosphatase complex. Curr Mol Med 2:121–143CrossRefPubMed
go back to reference Cogliati S, Enriquez JA, Scorrano L (2016) Mitochondrial cristae: where beauty meets functionality. Trends Biochem Sci 41:261–273CrossRefPubMed Cogliati S, Enriquez JA, Scorrano L (2016) Mitochondrial cristae: where beauty meets functionality. Trends Biochem Sci 41:261–273CrossRefPubMed
go back to reference DeBerardinis RJ, Lum JJ, Hatzivassiliou G, Thompson CB (2008) The biology of cancer: metabolic reprogramming fuels cell growth and proliferation. Cell Metab 7:11–20CrossRefPubMed DeBerardinis RJ, Lum JJ, Hatzivassiliou G, Thompson CB (2008) The biology of cancer: metabolic reprogramming fuels cell growth and proliferation. Cell Metab 7:11–20CrossRefPubMed
go back to reference Fosslien E (2001) Mitochondrial medicine--molecular pathology of defective oxidative phosphorylation. Ann Clin Lab Sci 31:25–67PubMed Fosslien E (2001) Mitochondrial medicine--molecular pathology of defective oxidative phosphorylation. Ann Clin Lab Sci 31:25–67PubMed
go back to reference Gorman GS, Chinnery PF, DiMauro S et al (2016) Mitochondrial diseases. Nat Rev Dis Primers 2:16080CrossRef Gorman GS, Chinnery PF, DiMauro S et al (2016) Mitochondrial diseases. Nat Rev Dis Primers 2:16080CrossRef
go back to reference Jeninga EH, Schoonjans K, Auwerx J (2010) Reversible acetylation of PGC-1: connecting energy sensors and effectors to guarantee metabolic flexibility. Oncogene 29:4617–4624CrossRefPubMed Jeninga EH, Schoonjans K, Auwerx J (2010) Reversible acetylation of PGC-1: connecting energy sensors and effectors to guarantee metabolic flexibility. Oncogene 29:4617–4624CrossRefPubMed
go back to reference Jones JG, Garcia P, Barosa C, Delgado TC, Diogo L (2009) Hepatic anaplerotic outflow fluxes are redirected from gluconeogenesis to lactate synthesis in patients with type 1a glycogen storage disease. Metab Eng 11:155–162CrossRefPubMed Jones JG, Garcia P, Barosa C, Delgado TC, Diogo L (2009) Hepatic anaplerotic outflow fluxes are redirected from gluconeogenesis to lactate synthesis in patients with type 1a glycogen storage disease. Metab Eng 11:155–162CrossRefPubMed
go back to reference Mutel E, Abdul-Wahed A, Ramamonjisoa N et al (2011) Targeted deletion of liver glucose-6 phosphatase mimics glycogen storage disease type 1a including development of multiple adenomas. J Hepatol 54:529–537CrossRefPubMed Mutel E, Abdul-Wahed A, Ramamonjisoa N et al (2011) Targeted deletion of liver glucose-6 phosphatase mimics glycogen storage disease type 1a including development of multiple adenomas. J Hepatol 54:529–537CrossRefPubMed
go back to reference Palikaras K, Tavernarakis N (2014) Mitochondrial homeostasis: the interplay between mitophagy and mitochondrial biogenesis. Exp Gerontol 56:182–188CrossRef Palikaras K, Tavernarakis N (2014) Mitochondrial homeostasis: the interplay between mitophagy and mitochondrial biogenesis. Exp Gerontol 56:182–188CrossRef
go back to reference Riede UN, Spycher MA, Gitzelmann R (1980) Glycogenosis type I (glucose 6-phosphatase deficiency): I. Ultrastructural morphometric analysis of juvenile liver cells. Pathol Res Pract 167:136–150CrossRefPubMed Riede UN, Spycher MA, Gitzelmann R (1980) Glycogenosis type I (glucose 6-phosphatase deficiency): I. Ultrastructural morphometric analysis of juvenile liver cells. Pathol Res Pract 167:136–150CrossRefPubMed
go back to reference Sazanov LA (2015) A giant molecular proton pump: structure and mechanism of respiratory complex I. Nat Rev Mol Cell Biol 16:375–388CrossRefPubMed Sazanov LA (2015) A giant molecular proton pump: structure and mechanism of respiratory complex I. Nat Rev Mol Cell Biol 16:375–388CrossRefPubMed
go back to reference Shulman RG, Rothman DL (2017) The glycogen shunt maintains glycolytic homeostasis and the Warburg effect in cancer. Trends Cancer 11:761–767CrossRef Shulman RG, Rothman DL (2017) The glycogen shunt maintains glycolytic homeostasis and the Warburg effect in cancer. Trends Cancer 11:761–767CrossRef
go back to reference Sotgia F, Whitaker-Menezes D, Martinez-Outschoorn UE et al (2012) Mitochondrial metabolism in cancer metastasis: visualizing tumor cell mitochondria and the “reverse Warburg effect” in positive lymph node tissue. Cell Cycle 11:1445–1454CrossRefPubMedPubMedCentral Sotgia F, Whitaker-Menezes D, Martinez-Outschoorn UE et al (2012) Mitochondrial metabolism in cancer metastasis: visualizing tumor cell mitochondria and the “reverse Warburg effect” in positive lymph node tissue. Cell Cycle 11:1445–1454CrossRefPubMedPubMedCentral
go back to reference Sun Q, Zhong W, Zhang W, Zhou Z (2016) Defect of mitochondrial respiratory chain is a mechanism of ROS overproduction in a rat model of alcoholic liver disease: role of zinc deficiency. Am J Physiol Gastrointest Liver Physiol 310:G205–G214CrossRefPubMed Sun Q, Zhong W, Zhang W, Zhou Z (2016) Defect of mitochondrial respiratory chain is a mechanism of ROS overproduction in a rat model of alcoholic liver disease: role of zinc deficiency. Am J Physiol Gastrointest Liver Physiol 310:G205–G214CrossRefPubMed
go back to reference Ventura-Clapier R, Garnier A, Veksler V (2008) Transcriptional control of mitochondrial biogenesis: the central role of PGC-1alpha. Cardiovasc Res 79:208–217CrossRefPubMed Ventura-Clapier R, Garnier A, Veksler V (2008) Transcriptional control of mitochondrial biogenesis: the central role of PGC-1alpha. Cardiovasc Res 79:208–217CrossRefPubMed
go back to reference Vyas S, Zaganjor E, Haigis MC (2016) Mitochondria and cancer. Cell 66:555–566CrossRef Vyas S, Zaganjor E, Haigis MC (2016) Mitochondria and cancer. Cell 66:555–566CrossRef
go back to reference Wellen KE, Hatzivassiliou G, Sachdeva UM, Bui TV, Cross JR, Thompson CB (2009) ATP-citrate lyase links cellular metabolism to histone acetylation. Science 324:1076–1080CrossRefPubMedPubMedCentral Wellen KE, Hatzivassiliou G, Sachdeva UM, Bui TV, Cross JR, Thompson CB (2009) ATP-citrate lyase links cellular metabolism to histone acetylation. Science 324:1076–1080CrossRefPubMedPubMedCentral
go back to reference Yiu WH, Lee YM, Peng WT et al (2010) Complete normalization of hepatic G6PC deficiency in murine glycogen storage disease type Ia using gene therapy. Mol Ther 18:1076–1084CrossRefPubMedPubMedCentral Yiu WH, Lee YM, Peng WT et al (2010) Complete normalization of hepatic G6PC deficiency in murine glycogen storage disease type Ia using gene therapy. Mol Ther 18:1076–1084CrossRefPubMedPubMedCentral
Metadata
Title
Sirtuin signaling controls mitochondrial function in glycogen storage disease type Ia
Authors
Jun-Ho Cho
Goo-Young Kim
Brian C. Mansfield
Janice Y. Chou
Publication date
01-11-2018
Publisher
Springer Netherlands
Published in
Journal of Inherited Metabolic Disease / Issue 6/2018
Print ISSN: 0141-8955
Electronic ISSN: 1573-2665
DOI
https://doi.org/10.1007/s10545-018-0192-1

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