Literature DB >> 33754030

SIRT2 ablation inhibits glucose-stimulated insulin secretion through decreasing glycolytic flux.

Feiye Zhou1, Linlin Zhang1, Kecheng Zhu1, Mengyao Bai1, Yuqing Zhang2, Qin Zhu1, Shushu Wang1, Chunxiang Sheng1, Miaomiao Yuan1, Yun Liu1, Jieli Lu1, Li Shao3, Xiao Wang1, Libin Zhou1.   

Abstract

Rationale: Sirtuins are NAD+-dependent protein deacylases known to have protective effects against age-related diseases such as diabetes, cancer, and neurodegenerative disease. SIRT2 is the only primarily cytoplasmic isoform and its overall role in glucose homeostasis remains uncertain.
Methods: SIRT2-knockout (KO) rats were constructed to evaluate the role of SIRT2 in glucose homeostasis. The effect of SIRT2 on β-cell function was detected by investigating the morphology, insulin secretion, and metabolomic state of islets. The deacetylation and stabilization of GKRP in β-cells by SIRT2 were determined by western blot, adenoviral infection, and immunoprecipitation.
Results: SIRT2-KO rats exhibited impaired glucose tolerance and glucose-stimulated insulin secretion (GSIS), without change in insulin sensitivity. SIRT2 deficiency or inhibition by AGK2 decreased GSIS in isolated rat islets, with lowered oxygen consumption rate. Adenovirus-mediated overexpression of SIRT2 enhanced insulin secretion from rat islets. Metabolomics analysis revealed a decrease in metabolites of glycolysis and tricarboxylic acid cycle in SIRT2-KO islets compared with control islets. Our study further demonstrated that glucokinase regulatory protein (GKRP), an endogenous inhibitor of glucokinase (GCK), was expressed in rat islets. SIRT2 overexpression deacetylated GKRP in INS-1 β-cells. SIRT2 knockout or inhibition elevated GKRP protein stability in islet β-cells, leading to an increase in the interaction of GKRP and GCK. On the contrary, SIRT2 inhibition promoted the protein degradation of ALDOA, a glycolytic enzyme. Conclusions: SIRT2 ablation inhibits GSIS through blocking GKRP protein degradation and promoting ALDOA protein degradation, resulting in a decrease in glycolytic flux. © The author(s).

Entities:  

Keywords:  SIRT2; acetylation; glucokinase regulatory protein; glucose-stimulated insulin secretion; glycolysis.; islets

Year:  2021        PMID: 33754030      PMCID: PMC7978320          DOI: 10.7150/thno.55330

Source DB:  PubMed          Journal:  Theranostics        ISSN: 1838-7640            Impact factor:   11.556


  60 in total

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Authors:  Jaya Krishnan; Carsten Danzer; Tatiana Simka; Josef Ukropec; Katharina Manuela Walter; Susann Kumpf; Peter Mirtschink; Barbara Ukropcova; Daniela Gasperikova; Thierry Pedrazzini; Wilhelm Krek
Journal:  Genes Dev       Date:  2012-02-01       Impact factor: 11.361

2.  Fatty liver is associated with reduced SIRT3 activity and mitochondrial protein hyperacetylation.

Authors:  Agnieszka A Kendrick; Mahua Choudhury; Shaikh M Rahman; Carrie E McCurdy; Marisa Friederich; Johan L K Van Hove; Peter A Watson; Nicholas Birdsey; Jianjun Bao; David Gius; Michael N Sack; Enxuan Jing; C Ronald Kahn; Jacob E Friedman; Karen R Jonscher
Journal:  Biochem J       Date:  2011-02-01       Impact factor: 3.857

Review 3.  50 years of protein acetylation: from gene regulation to epigenetics, metabolism and beyond.

Authors:  Eric Verdin; Melanie Ott
Journal:  Nat Rev Mol Cell Biol       Date:  2014-12-30       Impact factor: 94.444

4.  Acetylation of TUG protein promotes the accumulation of GLUT4 glucose transporters in an insulin-responsive intracellular compartment.

Authors:  Jonathan P Belman; Rachel R Bian; Estifanos N Habtemichael; Don T Li; Michael J Jurczak; Abel Alcázar-Román; Leah J McNally; Gerald I Shulman; Jonathan S Bogan
Journal:  J Biol Chem       Date:  2015-01-05       Impact factor: 5.157

5.  Organization of the human glucokinase regulator gene GCKR.

Authors:  B E Hayward; N Dunlop; S Intody; J P Leek; A F Markham; J P Warner; D T Bonthron
Journal:  Genomics       Date:  1998-04-01       Impact factor: 5.736

Review 6.  Nutrient regulation of insulin secretion and beta-cell functional integrity.

Authors:  Philip Newsholme; Celine Gaudel; Neville H McClenaghan
Journal:  Adv Exp Med Biol       Date:  2010       Impact factor: 2.622

Review 7.  The dual control of insulin secretion by glucose involves triggering and amplifying pathways in β-cells.

Authors:  Jean-Claude Henquin
Journal:  Diabetes Res Clin Pract       Date:  2011-08       Impact factor: 5.602

8.  Hepatocyte-specific deletion of SIRT1 alters fatty acid metabolism and results in hepatic steatosis and inflammation.

Authors:  Aparna Purushotham; Thaddeus T Schug; Qing Xu; Sailesh Surapureddi; Xiumei Guo; Xiaoling Li
Journal:  Cell Metab       Date:  2009-04       Impact factor: 27.287

9.  Molecular basis for the role of glucokinase regulatory protein as the allosteric switch for glucokinase.

Authors:  Jung Min Choi; Moon-Hyeong Seo; Hyun-Ho Kyeong; Eunkyung Kim; Hak-Sung Kim
Journal:  Proc Natl Acad Sci U S A       Date:  2013-06-03       Impact factor: 11.205

10.  The loss of Sirt1 in mouse pancreatic beta cells impairs insulin secretion by disrupting glucose sensing.

Authors:  L Luu; F F Dai; K J Prentice; X Huang; A B Hardy; J B Hansen; Y Liu; J W Joseph; M B Wheeler
Journal:  Diabetologia       Date:  2013-06-20       Impact factor: 10.122

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  2 in total

Review 1.  Resveratrol and neuroprotection: an insight into prospective therapeutic approaches against Alzheimer's disease from bench to bedside.

Authors:  Fahadul Islam; Mohamed H Nafady; Md Rezaul Islam; Susmita Saha; Salma Rashid; Aklima Akter; Md Harun- Or-Rashid; Muhammad Furqan Akhtar; Asma Perveen; Ghulam Md Ashraf; Md Habibur Rahman; Sherouk Hussein Sweilam
Journal:  Mol Neurobiol       Date:  2022-05-12       Impact factor: 5.590

Review 2.  Multiple Roles of SIRT2 in Regulating Physiological and Pathological Signal Transduction.

Authors:  Changhui Zhu; Xue Dong; Xiwei Wang; Yingying Zheng; Juanjuan Qiu; Yanling Peng; Jiajun Xu; Zhengbin Chai; Chunyan Liu
Journal:  Genet Res (Camb)       Date:  2022-08-29       Impact factor: 1.375

  2 in total

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