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A mutant HpaII methyltransferase functions as a mutator enzyme

机译:突变的HpaII甲基转移酶用作突变酶

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DNA (cytosine-5)-methyltransferases can cause deamination of cytosine when the cofactor S-adenosylmethionine (AdoMet) is limiting and thus function as sequence-specific C--?U mutator enzymes. Here we explored whether mutations causing inactivation of the cofactor binding activity of the HpaII methyltransferase, thus mimicking conditions of limiting AdoMet concentration, could convert a DNA methyltransferase to a C--?U mutator enzyme. We created two mutator enzymes from the HpaII methyltransferase (F38S and G40D) which both showed enhanced cytosine deamination activities in vitro and in vivo. Interestingly, the G:U mispairs generated by these enzymes were not repaired completely in bacteria equipped with uracil-DNA glycosylase-initiated repair machinery, giving rise to a potent mutator phenotype. This is the first report showing the creation of mutator enzymes from a DNA methyltransferase and the demonstration of their mutagenicity in living cells.
机译:当辅因子S-腺苷甲硫氨酸(AdoMet)受到限制时,DNA(cytosine-5)-甲基转移酶可导致胞嘧啶脱氨,从而用作序列特异性C CU突变酶。在这里,我们探讨了导致HpaII甲基转移酶辅因子结合活性失活的突变,从而模拟了限制AdoMet浓度的条件,是否可以将DNA甲基转移酶转化为C--U突变酶。我们从HpaII甲基转移酶(F38S和G40D)创建了两种突变酶,它们在体外和体内均显示出增强的胞嘧啶脱氨活性。有趣的是,由这些酶产生的G:U错配在配备尿嘧啶DNA糖基化酶启动的修复机制的细菌中并未得到完全修复,从而产生了强大的突变表型。这是第一份报告,显示了从DNA甲基转移酶产生突变酶并证明了它们在活细胞中的致突变性。

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