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首页> 外文期刊>Journal of Molecular Biology >Ensemble Structure of the Highly Flexible Complex Formed between Vesicular Stomatitis Virus Unassembled Nucleoprotein and its Phosphoprotein Chaperone
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Ensemble Structure of the Highly Flexible Complex Formed between Vesicular Stomatitis Virus Unassembled Nucleoprotein and its Phosphoprotein Chaperone

机译:水泡性口腔炎病毒未装配的核蛋白与其磷酸蛋白伴侣之间形成的高度柔性复合物的集合结构。

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Nucleocapsid assembly is an essential process in the replication of the non-segmented, negative-sense RNA viruses (NNVs). Unassembled nucleoprotein (N-0) is maintained in an RNA-free and monomeric form by its viral chaperone, the phosphoprotein (P), forming the N-0-P complex. Our earlier work solved the structure of vesicular stomatitis virus complex formed between an N-terminally truncated N (N-Delta 21) and a peptide of P (P-60) encompassing the N-0-binding site, but how the full-length P interacts with N-0 remained unknown. Here, we combine several experimental biophysical methods including size exclusion chromatography with detection by light scattering and refractometry, small-angle X-ray and neutron scattering and nuclear magnetic resonance spectroscopy with molecular dynamics simulation and computational modeling to characterize the N-Delta 21(0)-P-FL complex formed with dimeric full-length P. We show that for multi-molecular complexes, simultaneous multiple-curve fitting using small-angle neutron scattering data collected at varying contrast levels provides additional information and can help refine structural ensembles. We demonstrate that (a) vesicular stomatitis virus P-FL conserves its high flexibility within the N-Delta 21(0)-P-FL complex and interacts with N-Delta 21(0) only through its N-terminal extremity; (b) each protomer of P can chaperone one N-0 client protein, leading to the formation of complexes with stoichiometries 1N:P-2 and 2N:P-2; and (c) phosphorylation of residues Ser60, Thr62 and Ser64 provides no additional interactions with N-0 but creates a metal binding site in P-NTR. A comparison with the structures of Nipah virus and Ebola virus N-0-P core complex suggests a mechanism for the control of nucleocapsid assembly that is common to all NNVs. (C) 2016 Elsevier Ltd. All rights reserved.
机译:核仁组装是非节段的负义RNA病毒(NNV)复制过程中的必不可少的过程。未组装的核蛋白(N-0)通过其病毒伴侣蛋白,磷蛋白(P)保持无RNA和单体形式,形成N-0-P复合物。我们较早的工作解决了在N末端截短的N(N-Delta 21)和包含N-0结合位点的P肽(P-60)之间形成的水泡性口炎病毒复合物的结构,但是全长P与N-0的相互作用仍然未知。在这里,我们结合了多种实验生物物理方法,包括尺寸排阻色谱,通过光散射和折光法检测,小角X射线和中子散射以及核磁共振光谱与分子动力学仿真和计算模型,以表征N-Delta 21(0 )-P-FL配合物与二聚体全长P形成。我们表明,对于多分子配合物,使用以不同对比度水平收集的小角度中子散射数据进行的同时多曲线拟合提供了更多信息,并且可以帮助改进结构整体。我们证明(a)水泡性口腔炎病毒P-FL保留了其在N-Delta 21(0)-P-FL复合物中的高度灵活性,并且仅通过其N末端与N-Delta 21(0)相互作用; (b)每个P的启动子都可以伴随一个N-0客户蛋白,导致形成化学计量比为1N:P-2和2N:P-2的复合物; (c)残基Ser60,Thr62和Ser64的磷酸化不提供与N-0的额外相互作用,但在P-NTR中产生金属结合位点。与尼帕病毒和埃博拉病毒N-0-P核心复合物的结构进行比较,提出了一种控制核壳装配的机制,这是所有NNV所共有的。 (C)2016 Elsevier Ltd.保留所有权利。

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