首页> 外文期刊>Journal of Molecular Biology >Enzymatic properties of recombinant Dnmt3a DNA methyltransferase from mouse: The enzyme modifies DNA in a non-processive manner and also methylates non-CpA sites
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Enzymatic properties of recombinant Dnmt3a DNA methyltransferase from mouse: The enzyme modifies DNA in a non-processive manner and also methylates non-CpA sites

机译:小鼠重组Dnmt3a DNA甲基转移酶的酶学性质:该酶以非加工方式修饰DNA,还可以甲基化非CpA位点

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We present the first in vitro study investigating the catalytic properties of a mammalian de novo DNA methyltransferase. Dnmt3a from mouse was cloned and expressed in Escherichia coli. It was shown to be catalytically active in E. coil cells in vivo. The methylation activity of the purified protein was highest at pH 7.0 and 30 mM KCl. Our data show that recombinant Dnmt3a protein is indeed a de novo methyltransferase, as it catalyzes the transfer of methyl groups to unmethylated substrates with similar efficiency as to hemimethylated substrates. With oligonucleotide substrates, the catalytic activity of Dnmt3a is similar to that of Dnmt1: the K-m values for the unmethylated and hemimethylated oligonucleotide substrates are 2.5 muM, and the k(cat) values are 0.05 h(-1) and 0.07 h(-1), respectively. The enzyme catalyzes the methylation of DNA in a distributive manner, suggesting that Dnmt3a and Dnmt1 may cooperate during de novo methylation of DNA. Further, we investigated the methylation activity of Dnmt3a at non-canonical sites. Even though the enzyme shows maximum activity at CpG sires, with oligonucleotide substrates, a high methylation activity was also found at CpA sites, which are modified only twofold slower than CpG sites. Therefore, the specificity of Dnmt3a is completely different from that of the maintenance methyltransferase Dnmt1, which shows a 40 to 50-fold preference for hemimethylated over unmethylated CpG sites and has almost no methylation activity at non-CpG sites. (C) 2001 Academic Press. [References: 31]
机译:我们提出了第一个体外研究哺乳动物从头DNA甲基转移酶的催化性能的研究。克隆了来自小鼠的Dnmt3a并在大肠杆菌中表达。已证明其在体内的大肠杆菌细胞中具有催化活性。纯化的蛋白质的甲基化活性在pH 7.0和30 mM KCl时最高。我们的数据表明,重组Dnmt3a蛋白确实是从头甲基转移酶,因为它以与半甲基化底物相似的效率催化甲基向未甲基化底物的转移。使用寡核苷酸底物时,Dnmt3a的催化活性类似于Dnmt1:未甲基化和半甲基化的寡核苷酸底物的Km值为2.5μM,k(cat)值为0.05 h(-1)和0.07 h(-1) ), 分别。该酶以分布方式催化DNA的甲基化,提示Dnmt3a和Dnmt1可能在DNA的从头甲基化过程中协同作用。此外,我们调查了Dnmt3a在非规范位点的甲基化活性。即使该酶在CpG父亲处显示最大活性,但具有寡核苷酸底物,在CpA位点也发现了高甲基化活性,其修饰速度仅比CpG位慢两倍。因此,Dnmt3a的特异性与维持甲基转移酶Dnmt1的特异性完全不同,后者比未甲基化的CpG位点对半甲基化的偏好性高40至50倍,并且在非CpG位点几乎没有甲基化活性。 (C)2001学术出版社。 [参考:31]

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