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Sirtuin regulation of mitochondria: energy production, apoptosis, and signaling.
Trends Biochem Sci. 2010 Dec;35(12):669-75. doi: 10.1016/j.tibs.2010.07.003. Epub 2010 Sep 20.
2
Mammalian sirtuins and energy metabolism.
Int J Biol Sci. 2011;7(5):575-87. doi: 10.7150/ijbs.7.575. Epub 2011 May 9.
3
Mitochondrial sirtuins: Energy dynamics and cancer metabolism.
Mol Cells. 2024 Feb;47(2):100029. doi: 10.1016/j.mocell.2024.100029. Epub 2024 Feb 6.
5
Substrates and regulation mechanisms for the human mitochondrial sirtuins Sirt3 and Sirt5.
J Mol Biol. 2008 Oct 10;382(3):790-801. doi: 10.1016/j.jmb.2008.07.048. Epub 2008 Jul 25.
6
Emerging beneficial roles of sirtuins in heart failure.
Basic Res Cardiol. 2012 Jul;107(4):273. doi: 10.1007/s00395-012-0273-5. Epub 2012 May 24.
7
Mitochondrial metabolism, sirtuins, and aging.
Cold Spring Harb Perspect Biol. 2012 Dec 1;4(12):a013102. doi: 10.1101/cshperspect.a013102.
8
Mitochondrial sirtuins, metabolism, and aging.
J Genet Genomics. 2022 Apr;49(4):287-298. doi: 10.1016/j.jgg.2021.11.005. Epub 2021 Nov 29.
9
The role of mitochondrial sirtuins in health and disease.
Free Radic Biol Med. 2016 Nov;100:164-174. doi: 10.1016/j.freeradbiomed.2016.04.197. Epub 2016 May 6.
10
Function and regulation of the mitochondrial sirtuin isoform Sirt5 in Mammalia.
Biochim Biophys Acta. 2010 Aug;1804(8):1658-65. doi: 10.1016/j.bbapap.2009.09.011. Epub 2009 Sep 18.

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1
Reversible Acetylation of Non-histone Proteins in Human Cancers.
Results Probl Cell Differ. 2025;75:363-390. doi: 10.1007/978-3-031-91459-1_13.
2
Polyphenols and Exercise in Mitochondrial Biogenesis: Focus on Age-Related CNS Disorders.
Mol Neurobiol. 2025 Jun 13. doi: 10.1007/s12035-025-05121-y.
4
SIRT4 Controls Macrophage Function and Wound Healing through Control of Protein Itaconylation in Mice.
bioRxiv. 2025 May 13:2025.05.12.653532. doi: 10.1101/2025.05.12.653532.
6
Identification of SIRT3 modulating compounds in deep-sea fungi metabolites: Insights from molecular docking and MD simulations.
PLoS One. 2025 May 8;20(5):e0323107. doi: 10.1371/journal.pone.0323107. eCollection 2025.
7
Assembly and analysis of the complete mitochondrial genome of Leonurus japonicus (Lamiaceae).
Sci Rep. 2025 Apr 18;15(1):13372. doi: 10.1038/s41598-025-97594-z.
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Spermidine Enhances Mitochondrial Function and Mitigates Aortic Valve Calcification: Implications for DNA Methyltransferase-1 Activity.
JACC Basic Transl Sci. 2025 Mar;10(3):345-366. doi: 10.1016/j.jacbts.2024.11.011. Epub 2025 Feb 12.
10
SIRT3 deficiency reduces PFKFB3-driven T-cell glycolysis and promotes arthritic inflammation.
Sci China Life Sci. 2025 Jun;68(6):1755-1769. doi: 10.1007/s11427-024-2823-2. Epub 2025 Feb 27.

本文引用的文献

2
SIRT3 regulates mitochondrial fatty-acid oxidation by reversible enzyme deacetylation.
Nature. 2010 Mar 4;464(7285):121-5. doi: 10.1038/nature08778.
3
Regulation of cellular metabolism by protein lysine acetylation.
Science. 2010 Feb 19;327(5968):1000-4. doi: 10.1126/science.1179689.
4
Diet and exercise signals regulate SIRT3 and activate AMPK and PGC-1alpha in skeletal muscle.
Aging (Albany NY). 2009 Aug 15;1(9):771-83. doi: 10.18632/aging.100075.
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SIRT3 reduces lipid accumulation via AMPK activation in human hepatic cells.
J Dig Dis. 2010 Feb;11(1):55-62. doi: 10.1111/j.1751-2980.2009.00416.x.
7
Overexpression of SIRT5 confirms its involvement in deacetylation and activation of carbamoyl phosphate synthetase 1.
Biochem Biophys Res Commun. 2010 Feb 26;393(1):73-8. doi: 10.1016/j.bbrc.2010.01.081. Epub 2010 Jan 25.
8
Mammalian sirtuins: biological insights and disease relevance.
Annu Rev Pathol. 2010;5:253-95. doi: 10.1146/annurev.pathol.4.110807.092250.
9
NAD+-dependent deacetylase SIRT3 regulates mitochondrial protein synthesis by deacetylation of the ribosomal protein MRPL10.
J Biol Chem. 2010 Mar 5;285(10):7417-29. doi: 10.1074/jbc.M109.053421. Epub 2009 Dec 30.
10
Regulation of succinate dehydrogenase activity by SIRT3 in mammalian mitochondria.
Biochemistry. 2010 Jan 19;49(2):304-11. doi: 10.1021/bi901627u.

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