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首页> 外文期刊>eLife journal >CryoEM structures of open dimers of gyrase A in complex with DNA illuminate mechanism of strand passage
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CryoEM structures of open dimers of gyrase A in complex with DNA illuminate mechanism of strand passage

机译:具有DNA的复杂旋回酶A开放二聚体的CryoEM结构阐明了链通过的机理

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Gyrase is a unique type IIA topoisomerase that uses ATP hydrolysis to maintain the negatively supercoiled state of bacterial DNA. In order to perform its function, gyrase undergoes a sequence of conformational changes that consist of concerted gate openings, DNA cleavage, and DNA strand passage events. Structures where the transported DNA molecule (T-segment) is trapped by the A subunit have not been observed. Here we present the cryoEM structures of two oligomeric complexes of open gyrase A dimers and DNA. The protein subunits in these complexes were solved to 4 ? and 5.2 ? resolution. One of the complexes traps a linear DNA molecule, a putative T-segment, which interacts with the open gyrase A dimers in two states, representing steps either prior to or after passage through the DNA-gate. The structures locate the T-segment in important intermediate conformations of the catalytic cycle and provide insights into gyrase-DNA interactions and mechanism.
机译:回旋酶是一种独特的IIA型拓扑异构酶,它使用ATP水解来维持细菌DNA的负超螺旋状态。为了执行其功能,回旋酶经历了一系列构象变化,该构象变化包括一致的门打开,DNA切割和DNA链通过事件。尚未观察到转运的DNA分子(T-段)被A亚基捕获的结构。在这里,我们介绍了两种开放旋回酶A二聚体和DNA的寡聚复合物的cryoEM结构。这些复合物中的蛋白质亚基解析为4?和5.2?解析度。其中一种复合物捕获线性DNA分子,即推定的T段,该分子与开放的促旋酶A二聚体以两种状态相互作用,代表通过DNA门之前或之后的步骤。该结构将T段定位在催化循环的重要中间构象中,并提供了有关回旋酶与DNA相互作用和机理的见解。

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