Mitochondrial Sirtuin 3: New emerging biological function and therapeutic target
J Zhang, H Xiang, J Liu, Y Chen, RR He, B Liu - Theranostics, 2020 - pmc.ncbi.nlm.nih.gov
J Zhang, H Xiang, J Liu, Y Chen, RR He, B Liu
Theranostics, 2020•pmc.ncbi.nlm.nih.govSirtuin 3 (SIRT3) is one of the most prominent deacetylases that can regulate acetylation
levels in mitochondria, which are essential for eukaryotic life and inextricably linked to the
metabolism of multiple organs. Hitherto, SIRT3 has been substantiated to be involved in
almost all aspects of mitochondrial metabolism and homeostasis, protecting mitochondria
from a variety of damage. Accumulating evidence has recently documented that SIRT3 is
associated with many types of human diseases, including age-related diseases, cancer …
levels in mitochondria, which are essential for eukaryotic life and inextricably linked to the
metabolism of multiple organs. Hitherto, SIRT3 has been substantiated to be involved in
almost all aspects of mitochondrial metabolism and homeostasis, protecting mitochondria
from a variety of damage. Accumulating evidence has recently documented that SIRT3 is
associated with many types of human diseases, including age-related diseases, cancer …
Sirtuin 3 (SIRT3) is one of the most prominent deacetylases that can regulate acetylation levels in mitochondria, which are essential for eukaryotic life and inextricably linked to the metabolism of multiple organs. Hitherto, SIRT3 has been substantiated to be involved in almost all aspects of mitochondrial metabolism and homeostasis, protecting mitochondria from a variety of damage. Accumulating evidence has recently documented that SIRT3 is associated with many types of human diseases, including age-related diseases, cancer, heart disease and metabolic diseases, indicating that SIRT3 can be a potential therapeutic target. Here we focus on summarizing the intricate mechanisms of SIRT3 in human diseases, and recent notable advances in the field of small-molecule activators or inhibitors targeting SIRT3 as well as their potential therapeutic applications for future drug discovery.
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