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Emerging Roles of SIRT5 in Metabolism, Cancer, and SARS-CoV-2 Infection

Overview
Journal Cells
Publisher MDPI
Date 2023 Mar 29
PMID 36980194
Authors
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Abstract

Sirtuin 5 (SIRT5) is a predominantly mitochondrial enzyme catalyzing the removal of glutaryl, succinyl, malonyl, and acetyl groups from lysine residues through a NAD-dependent deacylase mechanism. SIRT5 is an important regulator of cellular homeostasis and modulates the activity of proteins involved in different metabolic pathways such as glycolysis, tricarboxylic acid (TCA) cycle, fatty acid oxidation, electron transport chain, generation of ketone bodies, nitrogenous waste management, and reactive oxygen species (ROS) detoxification. SIRT5 controls a wide range of aspects of myocardial energy metabolism and plays critical roles in heart physiology and stress responses. Moreover, SIRT5 has a protective function in the context of neurodegenerative diseases, while it acts as a context-dependent tumor promoter or suppressor. In addition, current research has demonstrated that SIRT5 is implicated in the SARS-CoV-2 infection, although opposing conclusions have been drawn in different studies. Here, we review the current knowledge on SIRT5 molecular actions under both healthy and diseased settings, as well as its functional effects on metabolic targets. Finally, we revise the potential of SIRT5 as a therapeutic target and provide an overview of the currently reported SIRT5 modulators, which include both activators and inhibitors.

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References
1.
Clark O, Yen K, Mellinghoff I . Molecular Pathways: Isocitrate Dehydrogenase Mutations in Cancer. Clin Cancer Res. 2016; 22(8):1837-42. PMC: 4834266. DOI: 10.1158/1078-0432.CCR-13-1333. View

2.
Guan J, Jiang X, Gai J, Sun X, Zhao J, Li J . Sirtuin 5 regulates the proliferation, invasion and migration of prostate cancer cells through acetyl-CoA acetyltransferase 1. J Cell Mol Med. 2020; 24(23):14039-14049. PMC: 7753991. DOI: 10.1111/jcmm.16016. View

3.
Fiorentino F, Mai A, Rotili D . Lysine Acetyltransferase Inhibitors From Natural Sources. Front Pharmacol. 2020; 11:1243. PMC: 7434864. DOI: 10.3389/fphar.2020.01243. View

4.
Kumar S, Lombard D . Functions of the sirtuin deacylase SIRT5 in normal physiology and pathobiology. Crit Rev Biochem Mol Biol. 2018; 53(3):311-334. PMC: 6233320. DOI: 10.1080/10409238.2018.1458071. View

5.
Tan M, Peng C, Anderson K, Chhoy P, Xie Z, Dai L . Lysine glutarylation is a protein posttranslational modification regulated by SIRT5. Cell Metab. 2014; 19(4):605-17. PMC: 4108075. DOI: 10.1016/j.cmet.2014.03.014. View