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The full-length structure of Thermus scotoductus OLD defines the ATP hydrolysis properties and catalytic mechanism of Class 1 OLD family nucleases

机译:Thermus Scotoductus Ord的全长结构定义了1级老家庭核酸酶的ATP水解性能和催化机制

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OLD family nucleases contain an N-terminal ATPase domain and a C-terminal Toprim domain. Homologs segregate into two classes based on primary sequence length and the presence/absence of a unique UvrD/PcrA/Rep-like helicase gene immediately downstream in the genome. Although we previously defined the catalytic machinery controlling Class 2 nuclease cleavage, degenerate conservation of the C-termini between classes precludes pinpointing the analogous residues in Class 1 enzymes by sequence alignment alone. Our Class 2 structures also provide no information on ATPase domain architecture and ATP hydrolysis. Here we present the full-length structure of the Class 1 OLD nuclease from Thermus scotoductus (Ts) at 2.20 ? resolution, which reveals a dimerization domain inserted into an N-terminal ABC ATPase fold and a C-terminal Toprim domain. Structural homology with genome maintenance proteins identifies conserved residues responsible for Ts OLD ATPase activity. Ts OLD lacks the C-terminal helical domain present in Class 2 OLD homologs yet preserves the spatial organization of the nuclease active site, arguing that OLD proteins use a conserved catalytic mechanism for DNA cleavage. We also demonstrate that mutants perturbing ATP hydrolysis or DNA cleavage in vitro impair P2 OLD-mediated killing of recBC?Escherichia coli hosts, indicating that both the ATPase and nuclease activities are required for OLD function in vivo.
机译:旧家庭核酸酶含有N-末端ATP酶域和C末端TOPRIM结构域。同源物基于主要序列长度和基因组中立即下游的独特UVRD / PCRA / Rep样幽皮酶基因分为两类。虽然我们之前定义了催化机制控制类2核酸酶切割,但是依赖于单独的序列取向的类别之间的C-末端的简并在类别之间释放出在1级酶中的类似残留物。我们的2级结构还提供了关于ATPase域架构和ATP水解的信息。在这里,我们将1级老核酸酶的全长结构从Thermus Scotoductus(TS)达到2.20?分辨率,显示插入N末端ABC ATP酶折叠和C末端TOPRIM结构域的二聚化结构域。与基因组维持蛋白质的结构性同源物识别负责TS旧ATPase活性的保守残留物。 TS Ord缺乏2类旧同源物中存在的C末端螺旋结构域,但保留了核酸酶活性位点的空间组织,争论旧蛋白质使用保守的催化机制进行DNA裂解。我们还证明,扰动ATP水解或DNA裂解的突变​​体在体外损害P2造成的RECBC杀死RECBC杀菌宿主,表明ATP酶和核酸酶活性是在体内旧功能所需的。

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