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Structural analysis of the inactive state of the Escherichia coli DNA polymerase clamp-loader complex

机译:大肠埃希氏菌DNA聚合酶夹-装载物复合体失活状态的结构分析

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摘要

Clamp-loader complexes are heteropentameric AAA+ ATPases that load sliding clamps onto DNA. The structure of the nucleotide-free Escherichia coli clamp loader had been determined previously and led to the proposal that the clamp-loader cycles between an inactive state, in which the ATPase domains form a closed ring, and an active state that opens up to form a “C” shape. The crystal structure was interpreted as being closer to the active state than the inactive state. The crystal structure of a nucleotide-bound eukaryotic clamp loader [replication factor C (RFC)] revealed a different and more tightly packed spiral organization of the ATPase domains, raising questions about the significance of the conformation seen earlier for the bacterial clamp loader. We describe crystal structures of the E. coli clamp-loader complex bound to the ATP analog ATPγS (at a resolution of 3.5 Å) and ADP (at a resolution of 4.1 Å). These structures are similar to that of the nucleotide-free clamp-loader complex. Only two of the three functional ATP-binding sites are occupied by ATPγS or ADP in these structures, and the bound nucleotides make no interfacial contacts in the complex. These results, along with data from isothermal titration calorimetry, molecular dynamics simulations, and comparison with the RFC structure, suggest that the more open form of the E. coli clamp loader described earlier and in the present work corresponds to a stable inactive state of the clamp loader in which the ATPase domains are prevented from engaging the clamp in the highly cooperative manner seen in the fully ATP-loaded RFC-clamp structure.
机译:钳夹复合物是杂五聚体AAA + ATPase,可将钳夹装载到DNA上。先前已经确定了无核苷酸的大肠杆菌钳状装载物的结构,并提出了这样的建议:钳状装载物在非活性状态(其中ATPase结构域形成一个闭合环)和活动状态(在其中形成一个封闭环)之间循环“ C”形。晶体结构被解释为比非活性状态更接近于活性状态。核苷酸结合的真核钳装载器[复制因子C(RFC)]的晶体结构揭示了ATPase结构域的一个不同且更紧密堆积的螺旋结构,这引发了有关早先对于细菌钳装载器所见构象的重要性的疑问。我们描述了结合到ATP类似物ATPγS(分辨率为3.5)和ADP(分辨率为4.1)的大肠埃希菌钳-装载物复合物的晶体结构。这些结构类似于无核苷酸的钳-装载物复合物的结构。在这些结构中,三个功能性ATP结合位点中只有两个被ATPγS或ADP占据,并且结合的核苷酸在复合物中没有界面接触。这些结果以及等温滴定热分析,分子动力学模拟以及与RFC结构的比较数据表明,较早描述的E. coli Clamp loader和目前的工作形式对应于E. coli的稳定非活性状态。钳加载器,其中ATPase域被阻止以完全协作的方式(在完全ATP加载的RFC钳结构中看到)与钳接合。

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