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Structural basis for DNA strand separation by a hexameric replicative helicase

机译:六聚体复制解旋酶分离DNA链的结构基础

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摘要

Hexameric helicases are processive DNA unwinding machines but how they engage with a replication fork during unwinding is unknown. Using electron microscopy and single particle analysis we determined structures of the intact hexameric helicase E1 from papillomavirus and two complexes of E1 bound to a DNA replication fork end-labelled with protein tags. By labelling a DNA replication fork with streptavidin (dsDNA end) and Fab (5' ssDNA) we located the positions of these labels on the helicase surface, showing that at least 10 bp of dsDNA enter the E1 helicase via a side tunnel. In the currently accepted 'steric exclusion' model for dsDNA unwinding, the active 3' ssDNA strand is pulled through a central tunnel of the helicase motor domain as the dsDNA strands are wedged apart outside the protein assembly. Our structural observations together with nuclease footprinting assays indicate otherwise: strand separation is taking place inside E1 in a chamber above the helicase domain and the 5' passive ssDNA strands exits the assembly through a separate tunnel opposite to the dsDNA entry point. Our data therefore suggest an alternative to the current general model for DNA unwinding by hexameric helicases.
机译:六聚解旋酶是连续的DNA解链机器,但是在解链过程中它们如何与复制叉接合。使用电子显微镜和单颗粒分析,我们确定了乳头瘤病毒完整的六聚解旋酶E1的结构以及E1的两个复合物,该复合物结合到末端用蛋白质标签标记的DNA复制叉上。通过用链霉亲和素(dsDNA末端)和Fab(5'ssDNA)标记DNA复制叉,我们将这些标记的位置定位在解旋酶表面,表明至少10 bp的dsDNA通过侧通道进入E1解旋酶。在目前公认的dsDNA展开的“空间排阻”模型中,当dsDNA链被楔入蛋白质组件外时,活性3'ssDNA链被拉过解旋酶马达结构域的中央通道。我们的结构观察和核酸酶足迹分析表明,否则:链分离发生在解旋酶域上方的一个小室中的E1内部,并且5'被动ssDNA链通过与dsDNA入口点相对的单独隧道离开装配体。因此,我们的数据提出了六聚解旋酶解链DNA的当前通用模型的替代方法。

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