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DNA binding and subunit interactions in the type I methyltransferase M.EcoR124I.

机译:I型甲基转移酶M.EcoR124I中的DNA结合和亚基相互作用。

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The type I DNA methyltransferase M.EcoR124I consists of two methylation subunits (HsdM) and one DNA recognition subunit (HsdS). When expressed independently, HsdS is insoluble, but this subunit can be obtained in soluble form as a GST fusion protein. We show that the HsdS subunit, even as a fusion protein, is unable to form a discrete complex with its DNA recognition sequence. When HsdM is added to the HsdS fusion protein, discrete complexes are formed but these are unable to methylate DNA. The two complexes formed correspond to species with one or two copies of the HsdM subunit, indicating that blocking the N-terminus of HsdS affects one of the HsdM binding sites. However, removal of the GST moiety from such complexes results in tight and specific DNA binding and restores full methylation activity. The results clearly demonstrate the importance of the HsdM subunit for DNA binding, in addition to its catalytic role in the methyltransferase reaction.
机译:I型DNA甲基转移酶M.EcoR124I由两个甲基化亚基(HsdM)和一个DNA识别亚基(HsdS)组成。当HsdS独立表达时,它是不溶的,但该亚基可以以GST融合蛋白的可溶形式获得。我们显示,HsdS亚基,即使作为融合蛋白,也无法与其DNA识别序列形成离散的复合体。当将HsdM添加到HsdS融合蛋白中时,会形成离散的复合物,但是它们不能甲基化DNA。形成的两个复合物对应于具有一或两个拷贝的HsdM亚基的物种,表明阻断HsdS的N端会影响HsdM结合位点之一。但是,从此类复合物中除去GST部分会导致紧密而特异性的DNA结合,并恢复完全的甲基化活性。结果清楚地表明,HsdM亚基除了在甲基转移酶反应中的催化作用外,对于DNA结合也很重要。

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