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首页> 外文期刊>BMC Biochemistry >Conserved motif VIII of murine DNA methyltransferase Dnmt3a is essential for methylation activity
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Conserved motif VIII of murine DNA methyltransferase Dnmt3a is essential for methylation activity

机译:鼠DNA甲基转移酶Dnmt3a的保守基序VIII对于甲基化活性至关重要

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Dnmt3a is a DNA methyltransferase that establishes de novo DNA methylation in mammals. The structure of the Dnmt3a C-terminal domain is similar to the bacterial M. HhaI enzyme, a well-studied prokaryotic DNA methyltransferase. No X-ray structure is available for the complex of Dnmt3a with DNA and the mechanistic details of DNA recognition and catalysis by mammalian Dnmts are not completely understood. Mutant variants of the catalytic domain of the murine Dnmt3a carrying substitutions of highly conserved N167, R200, and R202 have been generated by site directed mutagenesis and purified. Their methylation activity, DNA binding affinity, ability to flip the target cytosine out of the DNA double helix and covalent complex formation with DNA have been examined. Substitutions of N167 lead to reduced catalytic activity and reduced base flipping. Catalytic activity, base flipping, and covalent conjugate formation were almost completely abolished for the mutant enzymes with substitutions of R200 or R202. We conclude that R202 plays a similar role in catalysis in Dnmt3a-CD as R232 in M.SssI and R165 in M.HhaI, which could be positioning of the cytosine for nucleophilic attack by a conserved Cys. R200 of Dnmt3a-CD is important in both catalysis and cytosine flipping. Both conserved R200 and R202 are involved in creating and stabilizing of the transient covalent intermediate of the methylation reaction. N167 might contribute to the positioning of the residues from the motif VI, but does not play a direct role in catalysis.
机译:Dnmt3a是一种DNA甲基转移酶,可在哺乳动物中建立从头DNA甲基化。 Dnmt3a C末端域的结构与细菌M. HhaI酶类似,这是一种经过充分研究的原核DNA甲基转移酶。 Dnmt3a与DNA的复合物没有可用的X射线结构,对哺乳动物Dnmts识别和催化DNA的机理细节尚不完全清楚。已经通过定点诱变产生并纯化了带有高度保守的N167,R200和R202的取代的鼠Dnmt3a的催化结构域的突变体。已经检查了它们的甲基化活性,DNA结合亲和力,将靶胞嘧啶从DNA双螺旋中翻转出来的能力以及与DNA共价形成复合物的能力。 N167的取代导致催化活性降低和碱基翻转。取代R200或R202的突变酶的催化活性,碱基翻转和共价缀合物的形成几乎被完全消除。我们得出的结论是,R202在Dnmt3a-CD中的催化作用与M.SssI中的R232和M.HhaI中的R165相似,这可能是保守的Cys对胞嘧啶进行亲核攻击的位置。 Dnmt3a-CD的R200在催化和胞嘧啶翻转中均很重要。保守的R200和R202都参与产生和稳定甲基化反应的瞬时共价中间体。 N167可能有助于将基序VI中的残基定位,但在催化中不发挥直接作用。

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