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“开放”夹钳型 II 拓扑异构酶-DNA 复合物的结构提供了 DNA 捕获和转运的机制。

Structure of an 'open' clamp type II topoisomerase-DNA complex provides a mechanism for DNA capture and transport.

机构信息

Randall Division of Cell and Molecular Biophysics, 3rd floor New Hunt's House, Guy's Campus, King's College London, London, SE1 1UL, UK and Division of Biomedical Sciences, St. George's, University of London, Cranmer Terrace, London, SW17 0RE, UK.

出版信息

Nucleic Acids Res. 2013 Nov;41(21):9911-23. doi: 10.1093/nar/gkt749. Epub 2013 Aug 21.

Abstract

Type II topoisomerases regulate DNA supercoiling and chromosome segregation. They act as ATP-operated clamps that capture a DNA duplex and pass it through a transient DNA break in a second DNA segment via the sequential opening and closure of ATPase-, G-DNA- and C-gates. Here, we present the first 'open clamp' structures of a 3-gate topoisomerase II-DNA complex, the seminal complex engaged in DNA recognition and capture. A high-resolution structure was solved for a (full-length ParE-ParC55)2 dimer of Streptococcus pneumoniae topoisomerase IV bound to two DNA molecules: a closed DNA gate in a B-A-B form double-helical conformation and a second B-form duplex associated with closed C-gate helices at a novel site neighbouring the catalytically important β-pinwheel DNA-binding domain. The protein N gate is present in an 'arms-wide-open' state with the undimerized N-terminal ParE ATPase domains connected to TOPRIM domains via a flexible joint and folded back allowing ready access both for gate and transported DNA segments and cleavage-stabilizing antibacterial drugs. The structure shows the molecular conformations of all three gates at 3.7 Å, the highest resolution achieved for the full complex to date, and illuminates the mechanism of DNA capture and transport by a type II topoisomerase.

摘要

II 型拓扑异构酶调节 DNA 的超螺旋结构和染色体分离。它们作为 ATP 操作的夹具,捕获 DNA 双链,并通过 ATP 酶、G-DNA 和 C 门的顺序打开和关闭,将其穿过第二个 DNA 片段中的瞬时 DNA 断裂。在这里,我们展示了第一个参与 DNA 识别和捕获的 3 门拓扑异构酶 II-DNA 复合物的“开夹”结构。我们解析了肺炎链球菌拓扑异构酶 IV 的(全长 ParE-ParC55)2 二聚体与两个 DNA 分子的高分辨率结构:一个 B-A-B 形式的双螺旋构象的闭合 DNA 门和第二个 B 形式的双链与邻近催化重要 β 桨轮 DNA 结合域的新位点的闭合 C 门螺旋相关联。蛋白质 N 门处于“张开双臂”的状态,未二聚化的 ParE ATP 酶结构域通过一个柔性接头与 TOPRIM 结构域相连,并折叠回原位,从而为门和转运的 DNA 片段以及切割稳定的抗菌药物提供了便利的进入通道。该结构显示了所有三个门在 3.7 Å 的分子构象,这是迄今为止该完整复合物达到的最高分辨率,并阐明了 II 型拓扑异构酶的 DNA 捕获和转运机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3bdc/3834822/e3cd06eae6cf/gkt749f1p.jpg

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