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首页> 外文期刊>Nucleic acids research >Structural intermediates of a DNA–ligase complex illuminate the role of the catalytic metal ion and mechanism of phosphodiester bond formation
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Structural intermediates of a DNA–ligase complex illuminate the role of the catalytic metal ion and mechanism of phosphodiester bond formation

机译:DNA-连接酶复合物的结构中间体阐明了催化金属离子的作用和磷酸二酯键形成的机理

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摘要

DNA ligases join adjacent 5′ phosphate (5′P) and 3′ hydroxyl (3′OH) termini of double-stranded DNA via a three-step mechanism requiring a nucleotide cofactor and divalent metal ion. Although considerable structural detail is available for the first two steps, less is known about step 3 where the DNA-backbone is joined or about the cation role at this step. We have captured high-resolution structures of an adenosine triphosphate (ATP)-dependent DNA ligase from Prochlorococcus marinus including a Mn-bound pre-ternary ligase–DNA complex poised for phosphodiester bond formation, and a post-ternary intermediate retaining product DNA and partially occupied AMP in the active site. The pre-ternary structure unambiguously identifies the binding site of the catalytic metal ion and confirms both its role in activating the 3′OH terminus for nucleophilic attack on the 5′P group and stabilizing the pentavalent transition state. The post-ternary structure indicates that DNA distortion and most enzyme-AMP contacts remain after phosphodiester bond formation, implying loss of covalent linkage to the DNA drives release of AMP, rather than active site rearrangement. Additionally, comparisons of this cyanobacterial DNA ligase with homologs from bacteria and bacteriophage pose interesting questions about the structural origin of double-strand break joining activity and the evolution of these ATP-dependent DNA ligase enzymes.
机译:DNA连接酶通过需要核苷酸辅因子和二价金属离子的三步机制连接双链DNA的相邻5'磷酸(5'P)和3'羟基(3'OH)末端。尽管前两个步骤具有相当多的结构细节,但对于连接了DNA骨架的步骤3或该步骤中的阳离子作用知之甚少。我们已经从海藻原球菌中捕获了依赖三磷酸腺苷(ATP)的DNA连接酶的高分辨率结构,包括锰结合的三元前连接酶-DNA复合物,准备形成磷酸二酯键,以及三元后的中间产物保留了DNA和部分在活动站点中占用了AMP。所述三元结构明确地标识了催化金属离子的结合位点,并确认了其在激活3'OH末端以亲核攻击5'P基团和稳定五价过渡态中的作用。三元后结构表明,磷酸二酯键形成后,DNA畸变和大多数酶-AMP接触仍然存在,这意味着与DNA的共价键的丧失驱动了AMP的释放,而不是活性位点的重排。此外,这种蓝细菌DNA连接酶与细菌和噬菌体同源物的比较提出了有关双链断裂连接活性的结构起源以及这些ATP依赖性DNA连接酶的进化的有趣问题。

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