首页> 美国卫生研究院文献>The EMBO Journal >Increased protein flexibility leads to promiscuous protein--DNA interactions in type IC restriction-modification systems.
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Increased protein flexibility leads to promiscuous protein--DNA interactions in type IC restriction-modification systems.

机译:蛋白质灵活性的提高会导致IC限制修饰系统中蛋白质-DNA的相互作用。

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摘要

We have investigated the role of a four amino acid element that is repeated twice and three times, respectively, in the specificity polypeptides of the two allelic restriction-modification systems EcoR124 and EcoR124/3. We had earlier shown that this difference in amino acid sequence between the two systems is solely responsible for the different DNA sequence specificities of the two systems. The effect of single amino acid substitutions and small insertion and deletion mutations on restriction activity and modification specificity was determined in vivo by phage infection assays and in vitro by methylation of DNA with purified modification methylases. Mutant restriction-modification systems with changes in the number and the length of the central amino acid repeats exhibited decreased restriction activity and in some cases relaxed substrate specificity. Our data strongly support the idea that the repetitive amino acid motif in the specificity polypeptides forms part of a flexible interdomain linker. It may be responsible for positioning on the DNA the two major specificity polypeptide domains which are thought to contact independently the half sites of the split recognition sequences typical for all type I restriction-modification systems.
机译:我们已经研究了在两个等位基因限制性修饰系统EcoR124和EcoR124 / 3的特异性多肽中分别重复两次和三次的四个氨基酸元素的作用。我们先前已经表明,两个系统之间氨基酸序列的差异是造成两个系统不同DNA序列特异性的唯一原因。在体内通过噬菌体感染测定来确定单个氨基酸取代和小的插入和缺失突变对限制活性和修饰特异性的影响,而在体外通过用纯化的修饰甲基化酶对DNA进行甲基化来确定其影响。具有中心氨基酸重复序列的数目和长度变化的突变型限制性修饰系统显示出限制性活性降低,并且在某些情况下,底物特异性降低。我们的数据强烈支持这样的想法,即特异性多肽中的重复氨基酸基序形成柔性域间接头的一部分。它可能负责将两个主要特异性多肽结构域定位在DNA上,这两个结构域被认为与所有I型限制性修饰系统典型的分裂识别序列的半位点独立接触。

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