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核衣壳的结构与功能。

Nucleocapsid structure and function.

作者信息

Longhi S

机构信息

Architecture et Fonction des Macromolécules Biologiques, UMR 6098 CNRS et Universités Aix-Marseille I et II, 163 avenue de Luminy, Case 932, 13288 Marseille Cedex 09, France.

出版信息

Curr Top Microbiol Immunol. 2009;329:103-28. doi: 10.1007/978-3-540-70523-9_6.

Abstract

Measles virus belongs to the Paramyxoviridae family within the Mononegavirales order. Its nonsegmented, single-stranded, negative-sense RNA genome is encapsidated by the nucleoprotein (N) to form a helical nucleocapsid. This ribonucleoproteic complex is the substrate for both transcription and replication. The RNA-dependent RNA polymerase binds to the nucleocapsid template via its co-factor, the phosphoprotein (P). This chapter describes the main structural information available on the nucleoprotein, showing that it consists of a structured core (N(CORE)) and an intrinsically disordered C-terminal domain (N(TAIL)). We propose a model where the dynamic breaking and reforming of the interaction between N(TAIL) and P would allow the polymerase complex (L-P) to cartwheel on the nucleocapsid template. We also propose a model where the flexibility of the disordered N and P domains allows the formation of a tripartite complex (No-P-L) during replication, followed by the delivery of N monomers to the newly synthesized genomic RNA chain. Finally, the functional implications of structural disorder are also discussed in light of the ability of disordered regions to establish interactions with multiple partners, thus leading to multiple biological effects.

摘要

麻疹病毒属于单股负链RNA病毒目副粘病毒科。其无节段的单链负义RNA基因组由核蛋白(N)包裹,形成螺旋核衣壳。这种核糖核蛋白复合体是转录和复制的底物。RNA依赖的RNA聚合酶通过其辅助因子磷蛋白(P)与核衣壳模板结合。本章描述了关于核蛋白的主要结构信息,表明它由一个结构化核心(N(CORE))和一个内在无序的C末端结构域(N(TAIL))组成。我们提出一个模型,其中N(TAIL)与P之间相互作用的动态断裂和重新形成将允许聚合酶复合体(L-P)在核衣壳模板上“翻滚”。我们还提出一个模型,其中无序的N和P结构域的灵活性允许在复制过程中形成三方复合体(No-P-L),随后将N单体递送至新合成的基因组RNA链。最后,还根据无序区域与多个伙伴建立相互作用的能力,讨论了结构无序的功能意义,从而导致多种生物学效应。

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