Commissariat à l'Energie Atomique, Institut de Biologie Structurale, Université Grenoble Alpes, CNRS, 38000 Grenoble, France.
Commissariat à l'Energie Atomique, Institut de Biologie Structurale, Université Grenoble Alpes, CNRS, 38000 Grenoble, France
Proc Natl Acad Sci U S A. 2019 Mar 5;116(10):4256-4264. doi: 10.1073/pnas.1816417116. Epub 2019 Feb 20.
Assembly of paramyxoviral nucleocapsids on the RNA genome is an essential step in the viral cycle. The structural basis of this process has remained obscure due to the inability to control encapsidation. We used a recently developed approach to assemble measles virus nucleocapsid-like particles on specific sequences of RNA hexamers (poly-Adenine and viral genomic 5') in vitro, and determined their cryoelectron microscopy maps to 3.3-Å resolution. The structures unambiguously determine 5' and 3' binding sites and thereby the binding-register of viral genomic RNA within nucleocapsids. This observation reveals that the 3' end of the genome is largely exposed in fully assembled measles nucleocapsids. In particular, the final three nucleotides of the genome are rendered accessible to the RNA-dependent RNA polymerase complex, possibly enabling efficient RNA processing. The structures also reveal local and global conformational changes in the nucleoprotein upon assembly, in particular involving helix α6 and helix α13 that form edges of the RNA binding groove. Disorder is observed in the bound RNA, localized at one of the two backbone conformational switch sites. The high-resolution structure allowed us to identify putative nucleobase interaction sites in the RNA-binding groove, whose impact on assembly kinetics was measured using real-time NMR. Mutation of one of these sites, R195, whose sidechain stabilizes both backbone and base of a bound nucleic acid, is thereby shown to be essential for nucleocapsid-like particle assembly.
副粘病毒核衣壳在 RNA 基因组上的组装是病毒周期中的一个关键步骤。由于无法控制包装过程,该过程的结构基础仍然不清楚。我们使用最近开发的方法在体外特定的六聚体 RNA 序列(多聚腺苷酸和病毒基因组 5')上组装麻疹病毒核衣壳样颗粒,并将其冷冻电子显微镜图谱解析至 3.3 Å 分辨率。这些结构明确确定了 5' 和 3' 结合位点,从而确定了病毒基因组 RNA 在核衣壳内的结合顺序。这一观察结果表明,基因组的 3' 末端在完全组装的麻疹核衣壳中基本上是暴露的。特别是,基因组的最后三个核苷酸对 RNA 依赖性 RNA 聚合酶复合物是可及的,可能使 RNA 处理更加高效。这些结构还揭示了组装过程中核蛋白的局部和全局构象变化,特别是涉及形成 RNA 结合槽边缘的α6 螺旋和α13 螺旋。在结合的 RNA 中观察到无序,定位于两个骨架构象转换位点之一。高分辨率结构使我们能够识别 RNA 结合槽中的潜在核碱基相互作用位点,并使用实时 NMR 测量其对组装动力学的影响。突变其中一个位点 R195,其侧链稳定结合的核酸的骨架和碱基,从而表明该位点对于核衣壳样颗粒的组装是必不可少的。