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Sharp kinking of a coiled-coil in MutS allows DNA binding and release

机译:脉腰卷曲线圈的急剧扭结允许DNA结合和释放

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DNA mismatch repair (MMR) corrects mismatches, small insertions and deletions in DNA during DNA replication. While scanning for mismatches, dimers of MutS embrace the DNA helix with their lever and clamp domains. Previous studies indicated generic flexibility of the lever and clamp domains of MutS prior to DNA binding, but whether this was important for MutS function was unknown. Here, we present a novel crystal structure of DNA-free Escherichia coli MutS. In this apo-structure, the clamp domains are repositioned due to kinking at specific sites in the coiled-coil region in the lever domains, suggesting a defined hinge point. We made mutations at the coiled-coil hinge point. The mutants made to disrupt the helical fold at the kink site diminish DNA binding, whereas those made to increase stability of coiled-coil result in stronger DNA binding. These data suggest that the site-specific kinking of the coiled-coil in the lever domain is important for loading of this ABC-ATPase on DNA.
机译:DNA不匹配修复(MMR)在DNA复制期间校正DNA中的不匹配,小插入和缺失。 扫描不匹配时,静脉的二聚体与它们的杠杆和夹子域具有脱氧核糖核酸螺旋。 先前的研究表明DNA结合前Muts的杠杆和夹具结构域的通用柔韧性,但这对静脉曲张功能是重要的。 在这里,我们提出了一种新的DNA的大肠杆菌静脉晶体结构。 在该apo结构中,由于在杠杆域中的卷绕线区域中的特定位点在螺旋圆盘区域中的特定位点而重新定位夹具域,建议确定限定的铰接点。 我们在卷绕线圈铰接点处进行了突变。 使突变体破坏扭结位点的螺旋折,减少DNA结合,而那些以提高卷绕线圈的稳定性导致更强的DNA结合。 这些数据表明,杠杆域中的卷轴线圈的特定网站扭结对于在DNA上加载该ABC-ATP酶的重要性是重要的。

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