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An asymmetric complex of restriction endonuclease Mspl on its palindromic DNA recognition site

机译:限制性内切酶Mspl在回文DNA识别位点上的不对称复合物

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摘要

Most well-known restriction endonucleases recognize palindromic DNA sequences and are classified as Type IIP. Due to the recognition and cleavage symmetry, Type IIP enzymes are usually found to act as homodimers in forming 2-fold symmetric enzyme-DNA complexes. Here we report an asymmetric complex of the Type IIP restriction enzyme MspI in complex with its cognate recognition sequence. Unlike any other Type IIP enzyme reported to date, an MspI monomer and not a dimer binds to a palindromic DNA sequence. The enzyme makes specific contacts with all 4 base pairs in the recognition sequence, by six direct and five water-mediated hydrogen bonds and numerous van der Waal contacts. This MspI-DNA structure represents the first example of asymmetric recognition of a palindromic DNA sequence by two different structural motifs in one polypeptide. A few possible pathways are discussed for MspI to cut both strands of DNA, either as a monomer or dimer.
机译:最著名的限制性核酸内切酶识别回文DNA序列,并归类为IIP型。由于识别和切割的对称性,通常发现IIP型酶在形成2倍对称酶-DNA复合物时起同二聚体的作用。在这里,我们报告IIP型限制酶MspI的不对称复合体及其同源识别序列。与迄今报道的任何其他IIP型酶不同,MspI单体而不是二聚体与回文DNA序列结合。该酶通过六个直接和五个水介导的氢键以及许多范德华接触,与识别序列中的所有4个碱基对发生特异性接触。 MspI-DNA结构代表一个多肽中两个不同结构基序对回文DNA序列进行不对称识别的第一个例子。讨论了MspI切割DNA的两条链(单体或二聚体)的几种可能途径。

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