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轮状病毒颗粒的结构:内衣壳蛋白VP6与核心多肽VP3的相互作用

Structure of rotavirus particle: interaction of the inner capsid protein VP6 with the core polypeptide VP3.

作者信息

Sandino A M, Fernandez J, Pizarro J, Vasquez M, Spencer E

机构信息

Unidad de Virología, Universidad de Chile, Santiago.

出版信息

Biol Res. 1994;27(1):39-48.

PMID:7647814
Abstract

The structural relationship between VP6 (inner capsid polypeptide) and the viral core was studied using chemical cross-linking with dithiobis(succinimidyl propionate). Crosslinked single shelled and reconstituted rotavirus particles, suggest the existence of a complex organization of VP6 molecules in the inner capsid and a direct interaction with the core polypeptide VP3. The inhibition of the recovery of RNA polymerase activity associated with the reconstitution of the single shelled particle in the presence of antiVP6 monoclonal antibodies indicates that a VP6 domain between amino acids 56 and 58 seems to be important in viral transcription. A VP6 gene temperature-sensitive mutant (ts G) carrying a mutation affecting assembly of single shelled particles was used in reconstitution experiments. The mutant was able to recover RNA polymerase activity at restrictive temperature. Wild type cores or VP6 were able to reconstitute the particle with both the mutant cores and VP6. These results suggest the existence of various steps for the assembly of single shelled particles, where the VP6-VP3 interaction seems to be important for recovery of RNA polymerase activity.

摘要

利用二硫代双(琥珀酰亚胺丙酸酯)进行化学交联,研究了VP6(内衣壳多肽)与病毒核心之间的结构关系。交联的单层和重组轮状病毒颗粒表明,内衣壳中VP6分子存在复杂的组织形式,且与核心多肽VP3存在直接相互作用。在抗VP6单克隆抗体存在的情况下,与单层颗粒重组相关的RNA聚合酶活性恢复受到抑制,这表明氨基酸56至58之间的VP6结构域在病毒转录中似乎很重要。一个携带影响单层颗粒组装突变的VP6基因温度敏感突变体(ts G)用于重组实验。该突变体在限制温度下能够恢复RNA聚合酶活性。野生型核心或VP6能够与突变型核心和VP6一起重组颗粒。这些结果表明,单层颗粒组装存在多个步骤,其中VP6-VP3相互作用似乎对RNA聚合酶活性的恢复很重要。

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