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Alteration of Sendai Virus Morphogenesis and Nucleocapsid Incorporation due to Mutation of Cysteine Residues of the Matrix Protein

机译:基质蛋白的半胱氨酸残基突变导致仙台病毒形态发生和核衣壳掺入的变化。

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摘要

The matrix (M) protein of Sendai virus (SeV) has five cysteine residues, at positions 83, 106, 158, 251, and 295. To determine the roles of the cysteine residues in viral assembly, we generated mutant M cDNA possessing a substitution to serine at one of the cysteine residues or at all of the cysteine residues. Some mutant M proteins were unstable when expressed in cultured cells, suggesting that cysteine residues affect protein stability, probably by disrupting the proper conformation. In an attempt to generate virus from cDNA, SeV M-C83S, SeV M-C106S, and SeV M-C295S were successfully recovered from cDNA, while recombinant SeVs possessing other mutations were not. SeV M-C83S and SeV M-C106S had smaller virus particles than did the wild-type SeV, whereas SeV M-C295S had larger and heterogeneously sized particles. Furthermore, SeV M-C106S had a significant amount of empty particles lacking nucleocapsids. These results indicate that a single-point mutation at a cysteine residue of the M protein affects virus morphology and nucleocapsid incorporation, showing direct involvement of the M protein in SeV assembly. Cysteine-dependent conformation of the M protein was not due to disulfide bond formation, since the cysteines were shown to be free throughout the viral life cycle.
机译:仙台病毒(SeV)的基质(M)蛋白在位置83、106、158、251和295具有五个半胱氨酸残基。为了确定半胱氨酸残基在病毒装配中的作用,我们产生了具有取代基的突变M cDNA在一个半胱氨酸残基或所有半胱氨酸残基上的丝氨酸残基被修饰。一些突变M蛋白在培养细胞中表达时不稳定,这表明半胱氨酸残基可能会破坏适当的构象,从而影响蛋白稳定性。为了从cDNA产生病毒,成功从cDNA中回收了SeV M-C83S,SeV M-C106S和SeV M-C295S,而没有具有其他突变的重组SeV。 SeV M-C83S和SeV M-C106S的病毒颗粒比野生型SeV小,而SeV M-C295S的病毒颗粒更大且大小不一。此外,SeV M-C106S具有大量缺乏核衣壳的空颗粒。这些结果表明,M蛋白的半胱氨酸残基的单点突变会影响病毒的形态和核衣壳的掺入,表明M蛋白直接参与了SeV的装配。 M蛋白的半胱氨酸依赖性构象不是由于二硫键的形成,因为半胱氨酸在整个病毒生命周期中均显示为游离。

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