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Characterization of SETD3 methyltransferase-mediated protein methionine methylation

J Biol Chem. 2020; 
Shaobo Dai, Matthew V Holt, John R Horton, Clayton B Woodcock, Anamika Patel, Xing Zhang, Nicolas L Young, Alex W Wilkinson, Xiaodong Cheng
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Peptide Synthesis … glycerol, and 0.5 mM tris (2-carboxyethyl) phosphine (TCEP). The actin peptides His73 (residues 66-80), Lys73 (66-88) and Met73 (66- 88) containing varied amino acid at residue 73 (histidine, lysine, or methionine) were synthesized by GenScript. Crystallography … Get A Quote

摘要

Most characterized protein methylation events encompass arginine and lysine -methylation, and only a few cases of protein methionine thiomethylation have been reported. Newly discovered oncohistone mutations include lysine-to-methionine substitutions at positions 27 and 36 of histone H3.3. In these instances, the methionine substitution localizes to the active-site pocket of the corresponding histone lysine methyltransferase, thereby inhibiting the respective transmethylation activity. SET domain-containing 3 (SETD3) is a protein ( actin) histidine methyltransferase. Here, we generated an actin variant in which the histidine target of SETD3 was substituted with methionine. As for previously characterized histon... More

关键词

S-adenosylmethionine (SAM), S-methylmethionine, SETD3, actin, enzyme catalysis, methionine, methionine methylation, methyltransferases, protein methylation, protein structure
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