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首页> 外文期刊>Angewandte Chemie >Self-Assembly of Measles Virus Nucleocapsid-like Particles: Kinetics and RNA Sequence Dependence
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Self-Assembly of Measles Virus Nucleocapsid-like Particles: Kinetics and RNA Sequence Dependence

机译:麻疹病毒核衣壳样颗粒的自组装:动力学和RNA序列依赖性。

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摘要

Measles virus RNA genomes are packaged into helical nucleocapsids (NCs), comprising thousands of nucleoproteins (N) that bind the entire genome. N-RNA provides the template for replication and transcription by the viral polymerase and is a promising target for viral inhibition. Elucidation of mechanisms regulating this process has been severely hampered by the inability to controllably assemble NCs. Here, we demonstrate self-organization of N into NC-like particles in vitro upon addition of RNA, providing a simple and versatile tool for investigating assembly. Real-time NMR and fluorescence spectroscopy reveals biphasic assembly kinetics. Remarkably, assembly depends strongly on the RNA-sequence, with the genomic 5' end and poly-Adenine sequences assembling efficiently, while sequences such as poly-Uracil are incompetent for NC formation. This observation has important consequences for understanding the assembly process.
机译:麻疹病毒RNA基因组被包装到螺旋核衣壳(NCs)中,螺旋衣壳中包含成千上万个结合整个基因组的核蛋白(N)。 N-RNA提供了通过病毒聚合酶复制和转录的模板,并且是有希望的病毒抑制靶标。无法控制组装NC严重阻碍了调节该过程的机制的阐明。在这里,我们展示了在添加RNA后体外将N自我组织成NC样颗粒的过程,为研究组装提供了一种简单而通用的工具。实时核磁共振和荧光光谱揭示了双相组装动力学。值得注意的是,组装很大程度上取决于RNA序列,基因组5'端和聚腺嘌呤序列可以高效地组装,而诸如聚尿嘧啶的序列则不能形成NC。该观察结果对于理解组装过程具有重要的意义。

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