Literature DB >> 28973648

The NAD+-dependent deacetylase SIRT2 attenuates oxidative stress and mitochondrial dysfunction and improves insulin sensitivity in hepatocytes.

Vera Lemos1, Rita M de Oliveira2, Luana Naia3, Éva Szegö4, Elisabete Ramos5,6, Sónia Pinho7, Fernando Magro1, Cláudia Cavadas3,8, A Cristina Rego3,9, Vítor Costa10,11,12, Tiago F Outeiro2,4, Pedro Gomes1,3.   

Abstract

Insulin resistance is a major predictor of the development of metabolic disorders. Sirtuins (SIRTs) have emerged as potential targets that can be manipulated to counteract age-related diseases, including type 2 diabetes. SIRT2 has been recently shown to exert important metabolic effects, but whether SIRT2 regulates insulin sensitivity in hepatocytes is currently unknown. The aim of this study is to investigate this possibility and to elucidate underlying molecular mechanisms. Here, we show that SIRT2 is downregulated in insulin-resistant hepatocytes and livers, and this was accompanied by increased generation of reactive oxygen species, activation of stress-sensitive ERK1/2 kinase, and mitochondrial dysfunction. Conversely, SIRT2 overexpression in insulin-resistant hepatocytes improved insulin sensitivity, mitigated reactive oxygen species production and ameliorated mitochondrial dysfunction. Further analysis revealed a reestablishment of mitochondrial morphology, with a higher number of elongated mitochondria rather than fragmented mitochondria instigated by insulin resistance. Mechanistically, SIRT2 was able to increase fusion-related protein Mfn2 and decrease mitochondrial-associated Drp1. SIRT2 also attenuated the downregulation of TFAM, a key mtDNA-associated protein, contributing to the increase in mitochondrial mass. Importantly, we found that SIRT2 expression in PBMCs of human subjects was negatively correlated with obesity and insulin resistance. These results suggest a novel function for hepatic SIRT2 in the regulation of insulin sensitivity and raise the possibility that SIRT2 activators may offer novel opportunities for preventing or treating insulin resistance and type 2 diabetes.
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Year:  2017        PMID: 28973648     DOI: 10.1093/hmg/ddx298

Source DB:  PubMed          Journal:  Hum Mol Genet        ISSN: 0964-6906            Impact factor:   6.150


  23 in total

Review 1.  Mitohormesis and metabolic health: The interplay between ROS, cAMP and sirtuins.

Authors:  Carlos Marques Palmeira; João Soeiro Teodoro; João Alves Amorim; Clemens Steegborn; David A Sinclair; Anabela Pinto Rolo
Journal:  Free Radic Biol Med       Date:  2019-07-24       Impact factor: 7.376

2.  Reduced SIRT1 and SIRT2 expression promotes adipogenesis of human visceral adipose stem cells and associates with accumulation of visceral fat in human obesity.

Authors:  Sebastio Perrini; Stefania Porro; Pasquale Nigro; Angelo Cignarelli; Cristina Caccioppoli; Valentina Annamaria Genchi; Gennaro Martines; Michele De Fazio; Palma Capuano; Annalisa Natalicchio; Luigi Laviola; Francesco Giorgino
Journal:  Int J Obes (Lond)       Date:  2019-08-28       Impact factor: 5.095

Review 3.  Crosstalk between Sirtuins and Nrf2: SIRT1 activators as emerging treatment for diabetic neuropathy.

Authors:  Shivangi Patel; Hasnat Khan; Anuradha Majumdar
Journal:  Metab Brain Dis       Date:  2022-05-26       Impact factor: 3.655

4.  SIRT2 Deficiency Exacerbates Hepatic Steatosis via a Putative Role of the ER Stress Pathway.

Authors:  Helena Leal; João Cardoso; Patrícia Valério; Marta Quatorze; Vítor Carmona; Janete Cunha-Santos; Luís Pereira de Almeida; Cláudia Pereira; Cláudia Cavadas; Pedro Gomes
Journal:  Int J Mol Sci       Date:  2022-06-17       Impact factor: 6.208

Review 5.  Sirtuins-Mediated System-Level Regulation of Mammalian Tissues at the Interface between Metabolism and Cell Cycle: A Systematic Review.

Authors:  Parcival Maissan; Eva J Mooij; Matteo Barberis
Journal:  Biology (Basel)       Date:  2021-03-04

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

Authors:  Feiye Zhou; Linlin Zhang; Kecheng Zhu; Mengyao Bai; Yuqing Zhang; Qin Zhu; Shushu Wang; Chunxiang Sheng; Miaomiao Yuan; Yun Liu; Jieli Lu; Li Shao; Xiao Wang; Libin Zhou
Journal:  Theranostics       Date:  2021-03-04       Impact factor: 11.556

Review 7.  Sirtuins in the Cardiovascular System: Potential Targets in Pediatric Cardiology.

Authors:  Alessandro Ianni; Xuejun Yuan; Eva Bober; Thomas Braun
Journal:  Pediatr Cardiol       Date:  2018-03-02       Impact factor: 1.655

8.  SIRT2 knockout exacerbates insulin resistance in high fat-fed mice.

Authors:  Louise Lantier; Ashley S Williams; Curtis C Hughey; Deanna P Bracy; Freyja D James; Muhammad A Ansari; David Gius; David H Wasserman
Journal:  PLoS One       Date:  2018-12-11       Impact factor: 3.240

Review 9.  Protein acetylation: a novel modus of obesity regulation.

Authors:  Yuexia Liu; Hong Yang; Xuanchen Liu; Huihui Gu; Yizhou Li; Chao Sun
Journal:  J Mol Med (Berl)       Date:  2021-06-01       Impact factor: 4.599

10.  Effects of Resveratrol on FOXO1 and FOXO3a Genes Expression in Adipose Tissue, Serum Insulin, Insulin Resistance and Serum SOD Activity in Type 2 Diabetic Rats.

Authors:  Soheila Asadi; Zohreh Rahimi; Massoud Saidijam; Nooshin Shabab; Mohammad Taghi Goodarzi
Journal:  Int J Mol Cell Med       Date:  2018-12-31
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