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首页> 外文期刊>Nucleic acids research >Crystal structures of Thermotoga maritima reverse gyrase: inferences for the mechanism of positive DNA supercoiling
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Crystal structures of Thermotoga maritima reverse gyrase: inferences for the mechanism of positive DNA supercoiling

机译:滨海嗜热菌反向旋回酶的晶体结构:阳性DNA超螺旋机理的推论。

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Reverse gyrase is an ATP-dependent topoisomerase that is unique to hyperthermophilic archaea and eubacteria. The only reverse gyrase structure determined to date has revealed the arrangement of the N-terminal helicase domain and the C-terminal topoisomerase domain that intimately cooperate to generate the unique function of positive DNA supercoiling. Although the structure has elicited hypotheses as to how supercoiling may be achieved, it lacks structural elements important for supercoiling and the molecular mechanism of positive supercoiling is still not clear. We present five structures of authentic Thermotoga maritima reverse gyrase that reveal a first view of two interacting zinc fingers that are crucial for positive DNA supercoiling. The so-called latch domain, which connects the helicase and the topoisomerase domains is required for their functional cooperation and presents a novel fold. Structural comparison defines mobile regions in parts of the helicase domain, including a helical insert and the latch that are likely important for DNA binding during catalysis. We show that the latch, the helical insert and the zinc fingers contribute to the binding of DNA to reverse gyrase and are uniquely placed within the reverse gyrase structure to bind and guide DNA during strand passage. A possible mechanism for positive supercoiling by reverse gyrases is presented.
机译:反向旋回酶是ATP依赖的拓扑异构酶,对于嗜热古细菌和真细菌而言是独特的。迄今为止确定的唯一反向旋转酶结构揭示了N端解旋酶结构域和C端拓扑异构酶结构域的排列,它们紧密协作以产生阳性DNA超螺旋的独特功能。尽管该结构引起了关于如何实现超螺旋的假设,但是它缺乏对于超螺旋重要的结构元件,并且正超螺旋的分子机理仍不清楚。我们介绍了真实的马里莫特海马反向旋回酶的五个结构,揭示了两个相互作用的锌指的第一个视图,这两个锌指对于阳性DNA超螺旋至关重要。连接解旋酶和拓扑异构酶结构域的所谓闩锁结构域对于它们的功能合作是必需的,并且呈现新颖的折叠。结构比较在解旋酶结构域的部分中定义了可移动区域,包括在催化过程中可能对DNA结合很重要的螺旋插入物和闩锁。我们表明,闩锁,螺旋插入物和锌指有助于DNA反向旋回酶的结合,并唯一地放置在反向旋回酶结构内,以在链通过过程中结合和引导DNA。提出了一种可能的机制,通过反向陀螺正超卷。

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