首页> 外文期刊>Journal of Molecular Biology >Solution structure of the C-terminal nucleoprotein-RNA binding domain of the vesicular stomatitis virus phosphoprotein.
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Solution structure of the C-terminal nucleoprotein-RNA binding domain of the vesicular stomatitis virus phosphoprotein.

机译:水泡性口腔炎病毒磷蛋白的C端核蛋白-RNA结合结构域的溶液结构。

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摘要

Beyond common features in their genome organization and replication mechanisms, the evolutionary relationships among viruses of the Rhabdoviridae family are difficult to decipher because of the great variability in the amino acid sequence of their proteins. The phosphoprotein (P) of vesicular stomatitis virus (VSV) is an essential component of the RNA transcription and replication machinery; in particular, it contains binding sites for the RNA-dependent RNA polymerase and for the nucleoprotein. Here, we devised a new method for defining boundaries of structured domains from multiple disorder prediction algorithms, and we identified an autonomous folding C-terminal domain in VSV P (P(CTD)). We show that, like the C-terminal domain of rabies virus (RV) P, VSV P(CTD) binds to the viral nucleocapsid (nucleoprotein-RNA complex). We solved the three-dimensional structure of VSV P(CTD) by NMR spectroscopy and found that the topology of its polypeptide chain resembles that of RV P(CTD). The common part of bothproteins could be superimposed with a backbone RMSD from mean atomic coordinates of 2.6 A. VSV P(CTD) has a shorter N-terminal helix (alpha(1)) than RV P(CTD); it lacks two alpha-helices (helices alpha(3) and alpha(6) of RV P), and the loop between strands beta(1) and beta(2) is longer than that in RV. Dynamical properties measured by NMR relaxation revealed the presence of fast motions (below the nanosecond timescale) in loop regions (amino acids 209-214) and slower conformational exchange in the N- and C-terminal helices. Characterization of a longer construct indicated that P(CTD) is preceded by a flexible linker. The results presented here support a modular organization of VSV P, with independent folded domains separated by flexible linkers, which is conserved among different genera of Rhabdoviridae and is similar to that proposed for the P proteins of the Paramyxoviridae.
机译:除其基因组组织和复制机制的共同特征外,弹状病毒科病毒之间的进化关系由于其蛋白质氨基酸序列的巨大差异而难以解读。水泡性口炎病毒(VSV)的磷蛋白(P)是RNA转录和复制机制的重要组成部分;特别地,它包含RNA依赖性RNA聚合酶和核蛋白的结合位点。在这里,我们设计了一种从多种疾病预测算法定义结构域边界的新方法,并确定了VSV P(P(CTD))中的自主折叠C端结构域。我们显示,像狂犬病病毒(RV)P的C末端结构域一样,VSV P(CTD)与病毒核衣壳(核蛋白-RNA复合体)结合。我们通过核磁共振波谱分析了VSV P(CTD)的三维结构,发现其多肽链的拓扑结构类似于RV P(CTD)的拓扑结构。两种蛋白质的共同部分都可以与平均原子坐标为2.6 A的骨架RMSD重叠。VSVP(CTD)的N末端螺旋(alpha(1))比RV P(CTD)短;它缺少两个alpha螺旋(RV P的螺旋alpha(3)和alpha(6)),并且链beta(1)和beta(2)之间的环比RV中的长。通过NMR弛豫测量的动力学性质揭示了环状区域(氨基酸209-214)中存在快速运动(低于纳秒级时标),而N和C末端螺旋中构象交换速度较慢。较长结构的表征表明,P(CTD)之前带有一个灵活的连接子。此处提供的结果支持VSV P的模块化组织,其独立折叠结构域被柔性接头隔开,在弹状病毒科的不同属中是保守的,并且与针对副粘病毒科的P蛋白所提议的相似。

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