首页> 美国卫生研究院文献>Journal of Virology >Identification of Amino Acid Residues within Simian Virus 40 Capsid Proteins Vp1 Vp2 and Vp3 That Are Required for Their Interaction and for Viral Infection
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Identification of Amino Acid Residues within Simian Virus 40 Capsid Proteins Vp1 Vp2 and Vp3 That Are Required for Their Interaction and for Viral Infection

机译:猿病毒40衣壳蛋白Vp1Vp2和Vp3中相互作用和病毒感染所需的氨基酸残基的鉴定

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摘要

Interaction of simian virus 40 (SV40) major capsid protein Vp1 with the minor capsid proteins Vp2 and Vp3 is an integral aspect of the SV40 architecture. Two Vp3 sequence elements mediate Vp1 pentamer binding in vitro, Vp3 residues 155 to 190, or D1, and Vp3 residues 222 to 234, or D2. Of the two, D1 but not D2 was necessary and sufficient to direct the interaction with Vp1 in vivo. Rational mutagenesis of Vp3 residues (Phe157, Ile158, Pro164, Gly165, Gly166, Leu177, and Leu181) or Vp1 residues (Val243 and Leu245), based on a structural model of the SV40 Vp1 pentamer complexed with Vp3 D1, was carried out to disrupt the interaction between Vp1 and Vp3 and to study the consequences of these mutations for viral viability. Altering these residues to bulky, charged residues blocked the interaction in vitro. When these alterations were introduced into the viral genome, they reduced viral viability. Mutants with alterations in Vp1 Val243, Leu245, or both to glutamate were nearly nonviable, whereas those with Vp3 alterations reduced, but did not eliminate, viability. Our results defined the residues of Vp1 and the minor capsid proteins that are essential for both the interaction of the capsid proteins and viral viability in permissive cells.
机译:猿猴病毒40(SV40)主要衣壳蛋白Vp1与次要衣壳蛋白Vp2和Vp3的相互作用是SV40体系结构不可或缺的方面。两个Vp3序列元件介导了Vp1五聚体的体外结合,Vp3残基155至190或D1,Vp3残基222至234或D2。在这两者中,D1而非D2是必需的,并且足以指导体内与Vp1的相互作用。基于SV40 Vp1五聚体与Vp3 D1络合的结构模型,对Vp3残基(Phe157,Ile158,Pro164,Gly165,Gly166,Leu177和Leu181)或Vp1残基(Val243和Leu245)进行了合理诱变。 Vp1和Vp3之间的相互作用,并研究这些突变对病毒生存力的影响。将这些残基更改为庞大的带电残基可在体外阻断相互作用。将这些变化引入病毒基因组后,它们会降低病毒的生存能力。 Vp1 Val243,Leu245或两者均改变为谷氨酸的突变体几乎是不可行的,而Vp3改变的突变体则降低了但没有消除活力。我们的结果定义了Vp1和次要衣壳蛋白的残基,这些残基对于衣壳蛋白的相互作用和允许细胞中的病毒生存力都是必不可少的。

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