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DNA-induced narrowing of the gyrase N-gate coordinates T-segment capture and strand passage

机译:DNA诱导的促旋酶N-门变窄协调T段捕获和链通过

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摘要

DNA gyrase introduces negative supercoils into DNA in an ATP-dependent reaction. ONA supercoiling is catalyzed by a strand-passage mechanism, in which a T-segment of DNA is passed through the gap in a transiently cleaved G-segment. Strand passage requires the coordinated closing and opening of three protein interfaces in gyrase, the N-gate, DNA-gate, and C-gate. We show here that DNA binding to the DNA-gate of gyrase and wrapping of DNA around the C-terminal domains of GyrA induces a narrowing of the N-gate. This half-closed state prepares capture of a T-segment in the upper cavity of gyrase. Subsequent N-gate closure upon binding of ATP then poises the reaction toward strand passage. The N-gate reopens after ATP hydrolysis, allowing for further catalytic cycles. DNA binding, cleavage, and wrapping and N-gate narrowing are intimately linked events that coordinate conformational changes at the DNA and the N-gate.
机译:DNA促旋酶通过ATP依赖性反应将负超螺旋引入DNA。 ONA超螺旋是通过链通过机制催化的,其中DNA的T段通过瞬时裂解的G段的缺口穿过。链的通过要求在旋转酶,N-门,DNA-门和C-门中三个蛋白质界面的协调关闭和打开。我们在这里显示,DNA结合到回旋酶的DNA门和周围的GyrA C末端域周围的DNA包裹诱导N门的缩小。该半关闭状态准备在旋涡酶的上腔中捕获T段。 ATP结合后,随后的N门关闭将使反应朝着链通过。 ATP水解后,N门重新打开,从而允许进一步的催化循环。 DNA的结合,切割和包裹以及N-gate缩小是密切相关的事件,它们协调DNA和N-gate处的构象变化。

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