8hly
From Proteopedia
Crystal structure of SIRT3 in complex with H3K23la peptide
Structural highlights
FunctionSIR3_HUMAN NAD-dependent protein deacetylase. Activates mitochondrial target proteins, including ACSS1, IDH2 and GDH by deacetylating key lysine residues. Contributes to the regulation of the cellular energy metabolism. Important for regulating tissue-specific ATP levels.[1] [2] [3] [4] Publication Abstract from PubMedLysine lactylation (Kla) is a novel histone post-translational modification discovered in late 2019. Later, HDAC1-3, were identified as the robust Kla erasers. While the Sirtuin family proteins showed weak eraser activities toward Kla, as reported. However, the catalytic mechanisms and physiological functions of HDACs and Sirtuins are not identical. In this study, we observed that SIRT3 exhibits a higher eraser activity against the H4K16la site than the other human Sirtuins. Crystal structures revealed the detailed binding mechanisms between lactyl-lysine peptides and SIRT3. Furthermore, a chemical probe, p-H4K16laAlk, was developed to capture potential Kla erasers from cell lysates. SIRT3 was captured by this probe and detected via proteomic analysis. And another chemical probe, p-H4K16la-NBD, was developed to detect the eraser-Kla delactylation processes directly via fluorescence indication. Our findings and chemical probes provide new directions for further investigating Kla and its roles in gene transcription regulation. Identification of SIRT3 as an eraser of H4K16la.,Fan Z, Liu Z, Zhang N, Wei W, Cheng K, Sun H, Hao Q iScience. 2023 Aug 28;26(10):107757. doi: 10.1016/j.isci.2023.107757. eCollection , 2023 Oct 20. PMID:37720100[5] From MEDLINE®/PubMed®, a database of the U.S. National Library of Medicine. References
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