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The T1150A cancer mutant of the protein lysine dimethyltransferase NSD2 can introduce H3K36 trimethylation

, , , , , , , and . The journal of biological chemistry, 299 (6): 104796 (2023)
DOI: 10.1016/j.jbc.2023.104796

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Sequence specificity analysis of the SETD2 protein lysine methyltransferase and discovery of a SETD2 super-substrate, , , , , , , , and . Communications Biology, 3 (1): 511 (Sep 16, 2020)Structure, Activity and Function of the Suv39h1 and Suv39h2 Protein Lysine Methyltransferases, , and . Life, 11 (7): 703 (2021)Mechanistic basis of the increased methylation activity of the SETD2 protein lysine methyltransferase towards a designed super-substrate peptide, , , , , , and . Communication Chemistry, (2022)Biochemical characterization of protein lysine methyltransferases-regulation, specificity and effect of somatic cancer mutants. Universität Stuttgart, Stuttgart, Dissertation, (2023)Author Correction: Sequence specificity analysis of the SETD2 protein lysine methyltransferase and discovery of a SETD2 super-substrate, , , , , , , , and . Communications Biology, (2020)Correction to: https://doi.org/10.1038/s42003-020-01223-6.Mechanistic Insights into the Allosteric Regulation of the Clr4 Protein Lysine Methyltransferase by Autoinhibition and Automethylation, , , and . International Journal of Molecular Sciences, 21 (22): 8832 (2020)Sequence specificity analysis of the SETD2 protein lysine methyltransferase and discovery of a SETD2 super-substrate, , , , , , , , and . Communications Biology, 3 (1): 511 (2020)The T1150A cancer mutant of the protein lysine dimethyltransferase NSD2 can introduce H3K36 trimethylation, , , , , , , and . The journal of biological chemistry, 299 (6): 104796 (2023)