首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >PNAS Plus: Molecular mechanisms of substrate-controlled ring dynamics and substepping in a nucleic acid-dependent hexameric motor
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PNAS Plus: Molecular mechanisms of substrate-controlled ring dynamics and substepping in a nucleic acid-dependent hexameric motor

机译:PNAS Plus:受核酸依赖的六聚体马达中受底物控制的环动力学和亚阶的分子机制

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摘要

Ring-shaped hexameric helicases and translocases support essential DNA-, RNA-, and protein-dependent transactions in all cells and many viruses. How such systems coordinate ATPase activity between multiple subunits to power conformational changes that drive the engagement and movement of client substrates is a fundamental question. Using the Escherichia coli Rho transcription termination factor as a model system, we have used solution and crystallographic structural methods to delineate the range of conformational changes that accompany distinct substrate and nucleotide cofactor binding events. Small-angle X-ray scattering data show that Rho preferentially adopts an open-ring state in solution and that RNA and ATP are both required to cooperatively promote ring closure. Multiple closed-ring structures with different RNA substrates and nucleotide occupancies capture distinct catalytic intermediates accessed during translocation. Our data reveal how RNA-induced ring closure templates a sequential ATP-hydrolysis mechanism, provide a molecular rationale for how the Rho ATPase domains distinguishes between distinct RNA sequences, and establish structural snapshots of substepping events in a hexameric helicase/translocase.
机译:环形六聚解旋酶和转座酶支持所有细胞和许多病毒中依赖于DNA,RNA和蛋白质的基本交易。这样的系统如何协调多个亚基之间的ATPase活性以增强构象变化,从而驱动客户底物的参与和移动是一个基本问题。使用大肠杆菌Rho转录终止因子作为模型系统,我们已使用溶液和晶体学结构方法来描述伴随独特的底物和核苷酸辅因子结合事件的构象变化范围。小角X射线散射数据表明,Rho在溶液中优先采用开环状态,并且需要RNA和ATP共同促进环的闭合。具有不同RNA底物和核苷酸占有率的多个闭环结构捕获了易位期间访问的不同催化中间体。我们的数据揭示了RNA诱导的闭环如何以顺序ATP水解机制为模板,为Rho ATPase域如何区分不同的RNA序列提供了分子原理,并建立了六聚解旋酶/转座子中子步事件的结构快照。

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