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首页> 外文期刊>Biochemistry >Biochemical Characterization of Human SET and MYND Domain-Containing Protein 2 Methyltransferase
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Biochemical Characterization of Human SET and MYND Domain-Containing Protein 2 Methyltransferase

机译:人SET和MYND域蛋白2甲基转移酶的生化特性。

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摘要

SET and MYND domain-containing protein 2 (SMYD2) is a protein lysine methyltransferase that catalyzes the transfer of methyl groups from S-adenosylmethionine (AdoMet) to acceptor lysine residues on histones and other proteins. To understand the kinetic mechanism and the function of individual domains, human SMYD2 was overexpressed, purified, and characterized. Substrate specificity and product analysis studies established SMYD2 as a monomethyltransferase that prefers nonmethylated p53 peptide substrate. Steady-state kinetic and product inhibition studies showed that SMYD2 operates via a rapid equilibrium random Bi Bi mechanism at a rate of 0.048 ( 0.001 s-1, with KMs for AdoMet and the p53 peptide of 0.031 ( 0.01 μM and 0.68(0.22 μM, respectively. Metal analyses revealed that SMYD2 contains three tightly bound zinc ions that are important for maintaining the structural integrity and catalytic activity of SMYD2. Catalytic activity was also shown to be dependent on the GxG motif in the S-sequence of the split SET domain, as a G18A/G20A double mutant and a sequence deletion within the conserved motif impaired AdoMet binding and significantly decreased enzymatic activity. The functional importance of other SMYD2 domains including the MYND domain, the cysteine-rich post-SET domain, and theC-terminal domain (CTD), were also investigated. Taken together, these results demonstrated the functional importance of distinct domains in the SMYD family of proteins and further advanced our understanding of the catalytic mechanism of this family.
机译:包含SET和MYND域的蛋白质2(SMYD2)是一种蛋白质赖氨酸甲基转移酶,可催化甲基从S-腺苷甲硫氨酸(AdoMet)转移到组蛋白和其他蛋白质上的受体赖氨酸残基上。为了了解单个域的动力学机制和功能,人类SMYD2被过表达,纯化和表征。底物特异性和产物分析研究确定SMYD2为单甲基转移酶,更喜欢非甲基化的p53肽底物。稳态动力学和产物抑制研究表明,SMYD2通过快速平衡随机Bi Bi机制以0.048(0.001 s-1)的速率运行,其中AdoMet的KMs和p31肽的0.031(0.01μM和0.68(0.22μM,金属分析分别显示SMYD2包含三个紧密结合的锌离子,这对于维持SMYD2的结构完整性和催化活性很重要,催化活性还取决于在SET拆分结构域的S序列中的GxG基序, G18A / G20A双突变体和保守基序内的序列缺失会损害AdoMet结合并显着降低酶活性,其他SMYD2域的功能重要性包括MYND域,富含半胱氨酸的SET后域和C末端域总而言之,这些结果证明了SMYD蛋白质家族中不同结构域的功能重要性,并进一步提高了我们的理解该家族的催化机制。

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