Key Laboratory of Special Pathogens and Biosafety, Wuhan Institute of Virology, Chinese Academy of Sciences, Wuhan, 430071, China.
University of Chinese Academy of Sciences, Beijing, 100049, China.
Virol Sin. 2017 Dec;32(6):548-552. doi: 10.1007/s12250-017-4066-8.
The RNA-dependent RNA polymerases (RdRPs) encoded by RNA viruses represent a unique class of nucleic acid polymerases. Unlike other classes of single-subunit polymerases, viral RdRPs have evolved a unique conformational change in their palm domain to close the active site during catalysis. The hallmark of this conformational change is the backbone shift of the polymerase motif A from an "open" state to a "closed" state, allowing two universally conserved aspartic acid residues to orient toward each other for divalent metal binding and catalysis. The "closed" motif A conformation was only observed upon the binding of correct NTP in RdRP catalytic complexes or under rare conditions such as induced by a bound lutetium ion or a bound glutamate molecule. By solving the crystal structure of the catalytic elongation complex of the coxsackievirus RdRP, we in this work observed for the first time the "closed" motif A conformation in the absence of an NTP substrate or other conformational-change-inducing factors. This observation emphasizes the intrinsic dynamic features of viral RdRP motif A, and solidifies the structural basis for how this important structural element participates in catalytic events of the RdRPs.
RNA 依赖的 RNA 聚合酶(RdRPs)是 RNA 病毒编码的一种独特的核酸聚合酶。与其他单亚基聚合酶不同,病毒 RdRPs 在 palm 结构域中进化出了一种独特的构象变化,在催化过程中关闭活性位点。这种构象变化的标志是聚合酶 motif A 的骨架从“打开”状态向“关闭”状态的转移,允许两个普遍保守的天冬氨酸残基彼此朝向,以便进行二价金属结合和催化。只有在 RdRP 催化复合物中结合正确的 NTP 或在罕见条件下(例如结合镥离子或结合谷氨酸分子诱导),才能观察到“关闭”的 motif A 构象。通过解析柯萨奇病毒 RdRP 的催化延伸复合物的晶体结构,我们在这项工作中首次观察到在没有 NTP 底物或其他构象变化诱导因子的情况下 motif A 的“关闭”构象。这一观察结果强调了病毒 RdRP motif A 的固有动态特征,并为这个重要结构元件如何参与 RdRPs 的催化事件提供了坚实的结构基础。