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Intrinsic Dynamics of the Partly Unstructured PX Domain from the Sendai Virus RNA Polymerase Cofactor P

机译:仙台病毒RNA聚合酶辅因子P的部分非结构化PX域的内在动力学。

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摘要

Despite their evident importance for function, dynamics of intrinsically unstructured proteins are poorly understood. Sendai virus phosphoprotein, cofactor of the RNA polymerase, contains a partly unstructured protein domain. The phosphoprotein X domain (PX) is responsible for binding the polymerase to the nucleocapsid assembling the viral RNA. For RNA synthesis, the interplay of the dynamics of the unstructured and structured PX subdomains is thought to drive progression of the RNA polymerase along the nucleocapsid. Here we present a detailed study of the dynamics of PX using hydrogen/deuterium exchange and different NMR relaxation measurements. In the unstructured subdomain, large amplitude fast motions were found to be fine-tuned by the presence of residues with short side chains. In the structured subdomain, where fast motions of both backbone and side chains are fairly restricted, the first helix undergoes slow conformational exchange corresponding to a local unfolding event. The other two helices, which represent the nucleocapsid binding site, were found to be more stable and to reorient with respect to each other, as probed by slow conformational exchange identified for residues on the third helix. The study illustrates the intrinsically differential dynamics of this partly unstructured protein and proposes the relation between these dynamics and its function.
机译:尽管它们对功能的重要性很明显,但对本质上非结构化的蛋白质的动力学了解却很少。 RNA聚合酶的辅助因子,仙台病毒磷蛋白,包含部分非结构化的蛋白结构域。磷蛋白X结构域(PX)负责将聚合酶与组装病毒RNA的核衣壳结合。对于RNA合成,非结构化和结构化的PX子域的动力学相互作用被认为可驱动RNA聚合酶沿着核衣壳的进程。在这里,我们介绍了使用氢/氘交换和不同的NMR弛豫测量对PX动力学的详细研究。在非结构化子域中,发现大幅度快速运动可以通过存在具有短侧链的残基来进行微调。在结构化的子域中,主链和侧链的快速运动都受到相当大的限制,第一个螺旋分子经历了与局部展开事件相对应的缓慢构象交换。如通过鉴定第三螺旋上的残基的缓慢构象交换所探查的,发现代表核衣壳结合位点的其他两个螺旋相对更稳定并且相对于彼此重新定向。该研究说明了这种部分非结构化蛋白质的内在差异动力学,并提出了这些动力学与其功能之间的关系。

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