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Steric exclusion and wrapping of the excluded DNA strand occurs along discrete external binding paths during MCM helicase unwinding

机译:在MCM解旋酶解旋过程中,排阻的DNA链的排阻和包裹沿着离散的外部结合路径发生

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摘要

The minichromosome maintenance (MCM) helicase complex is essential for the initiation and elongation of DNA replication in both the eukaryotic and archaeal domains. The archaeal homohexameric MCM helicase from Sulfolobus solfataricus serves as a model for understanding mechanisms of DNA unwinding. In this report, the displaced 5′-tail is shown to provide stability to the MCM complex on DNA and contribute to unwinding. Mutations in a positively charged patch on the exterior surface of the MCM hexamer destabilize this interaction, alter the path of the displaced 5′-tail DNA and reduce unwinding. DNA footprinting and single-molecule fluorescence experiments support a previously unrecognized wrapping of the 5′-tail. This mode of hexameric helicase DNA unwinding is termed the steric exclusion and wrapping (SEW) model, where the 3′-tail is encircled by the helicase while the displaced 5′-tail wraps around defined paths on the exterior of the helicase. The novel wrapping mechanism stabilizes the MCM complex in a positive unwinding mode, protects the displaced single-stranded DNA tail and prevents reannealing.
机译:微型染色体维持(MCM)解旋酶复合物对于真核和古细菌结构域中DNA复制的起始和延伸至关重要。来自Sulfolobus solfataricus的古细菌同六聚体MCM解旋酶可作为了解DNA解链机制的模型。在该报告中,显示了置换的5'-尾巴可为DNA上的MCM复合物提供稳定性,并有助于展开。 MCM六聚体外表面带正电荷的贴剂中的突变破坏了这种相互作用的稳定性,改变了被置换的5'-尾DNA的路径并减少了解链。 DNA足迹和单分子荧光实验支持以前无法识别的5'尾包裹。六聚解旋酶DNA展开的这种模式称为空间排斥和包裹(SEW)模型,其中3'尾巴被解旋酶包围,而置换的5'尾巴围绕在解旋酶外部的定义路径周围。新颖的包裹机制使MCM复合物以正向展开模式稳定,保护了移位的单链DNA尾部并防止了重新退火。

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