Mitochondrial SIRT3 and neurodegenerative brain disorders

SIRT3 锡尔图因 神经退行性变 生物 线粒体 神经科学 NAD+激酶 兴奋毒性 组蛋白 医学 细胞生物学 疾病 遗传学 生物化学 基因 内科学 谷氨酸受体 受体
作者
Anamika,Archita Khanna,Papia Acharjee,Arup Acharjee,Surendra Kumar Trigun
出处
期刊:Journal of Chemical Neuroanatomy [Elsevier]
卷期号:95: 43-53 被引量:45
标识
DOI:10.1016/j.jchemneu.2017.11.009
摘要

Sirtuins are highly conserved NAD+ dependent class III histone deacetylases and catalyze deacetylation and ADP ribosylation of a number of non-histone proteins. Since, they require NAD+ for their activity, the cellular level of Sirtuins represents redox status of the cells and thereby serves as bona fide metabolic stress sensors. Out of seven homologues of Sirtuins identified in mammals, SIRT3, 4 & 5 have been found to be localized and active in mitochondria. During recent past, clusters of protein substrates for SIRT3 have been identified in mitochondria and thereby advocating SIRT3 as the main mitochondrial Sirtuin which could be involved in protecting stress induced mitochondrial integrity and energy metabolism. As mitochondrial dysfunction underlies the pathogenesis of almost all neurodegenerative diseases, a role of SIRT3 becomes an arguable speculation in such brain disorders. Some recent findings demonstrate that SIRT3 over expression could prevent neuronal derangements in certain in vivo and in vitro models of aging and neurodegenerative brain disorders like; Alzheimer's disease, Huntington's disease, stroke etc. Similarly, loss of SIRT3 has been found to accelerate neurodegeneration in the brain challenged with excitotoxicity. Therefore, it is argued that SIRT3 could be a relevant target to understand pathogenesis of neurodegenerative brain disorders. This review is an attempt to summarize recent findings on (1) the implication of SIRT3 in neurodegenerative brain disorders and (2) whether SIRT3 modulation could ameliorate neuropathologies in relevant models.
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