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轮状病毒VP4中一个新的半胱氨酸参与了另一种二硫键的形成。

A new cysteine in rotavirus VP4 participates in the formation of an alternate disulfide bond.

作者信息

Cuadras M A, Méndez E, Arias C F, López S

机构信息

Departamento de Genética y Fisiología Molecular, Instituto de Biotecnología, Universidad Nacional Autónoma de México, Cuernavaca, Morelos.

出版信息

J Gen Virol. 1998 Nov;79 ( Pt 11):2673-7. doi: 10.1099/0022-1317-79-11-2673.

Abstract

Most animal rotaviruses bind to a cell surface molecule that contains sialic acid (SA). We have recently isolated variants from simian rotavirus RRV which show an SA-independent phenotype. The VP4 protein of these variants was shown to have three amino acid changes with respect to the wt protein, one of them being Tyr-267 --> Cys. In this work, we have investigated whether the new cysteine could interfere with the disulfide bond (Cys-318/Cys-380) present in the VP5* subunit of the wt protein. Cysteine residues 318 and 380 were mutagenized in gpr8 and RRV VP4 genes, and the wt and mutant genes were transcribed and translated in vitro. The protein products were analysed by electrophoresis under reducing and non-reducing conditions. This approach showed that, in the VP4 protein synthesized in vitro, Cys-267 is capable of forming an alternate disulfide bond with Cys-318. This alternate bond also seems to occur in the VP4 protein present in the variant gpr8 virus particles.

摘要

大多数动物轮状病毒会与含有唾液酸(SA)的细胞表面分子结合。我们最近从猿猴轮状病毒RRV中分离出了一些变体,这些变体表现出不依赖SA的表型。已证明这些变体的VP4蛋白相对于野生型蛋白有三个氨基酸变化,其中之一是Tyr-267→Cys。在这项工作中,我们研究了新出现的半胱氨酸是否会干扰野生型蛋白VP5*亚基中存在的二硫键(Cys-318/Cys-380)。在gpr8和RRV VP4基因中对318和380位半胱氨酸残基进行了诱变,并在体外对野生型和突变基因进行转录和翻译。在还原和非还原条件下通过电泳对蛋白质产物进行分析。该方法表明,在体外合成的VP4蛋白中,Cys-267能够与Cys-318形成另一种二硫键。这种替代键似乎也存在于变体gpr8病毒颗粒中的VP4蛋白中。

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