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Regulation of measles virus gene expression by P protein coiled-coil properties

机译:通过P蛋白卷曲螺旋特性调控麻疹病毒基因表达。

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摘要

The polymerase of negative-stranded RNA viruses consists of the large protein (L) and the phosphoprotein (P), the latter serving both as a chaperon and a cofactor for L. We mapped within measles virus (MeV) P the regions responsible for binding and stabilizing L and showed that the coiled-coil multimerization domain (MD) of P is required for gene expression. MeV MD is kinked as a result of the presence of a stammer. Both restoration of the heptad regularity and displacement of the stammer strongly decrease or abrogate activity in a minigenome assay. By contrast, P activity is rather tolerant of substitutions within the stammer. Single substitutions at the “a” or “d” hydrophobic anchor positions with residues of variable hydrophobicity revealed that P functionality requires a narrow range of cohesiveness of its MD. Results collectively indicate that, beyond merely ensuring P oligomerization, the MD finely tunes viral gene expression through its cohesiveness.
机译:负链RNA病毒的聚合酶由大蛋白(L)和磷蛋白(P)组成,后者既是L的分子伴侣又是辅助因子。我们在麻疹病毒(MeV)P中绘制了负责结合的区域并稳定L,并表明P的卷曲螺旋多聚结构域(MD)是基因表达所必需的。 MeV MD由于结冰而结结。在微型基因组测定中,七足虫规则性的恢复和雄蕊的移位都大大降低或消除了活性。相比之下,P活性相当耐受雄结内的取代。在“ a”或“ d”疏水性锚位置上用可变疏水性的残基进行单取代表明,P功能性要求其MD的内聚力范围狭窄。结果共同表明,除了确保P寡聚化外,MD还通过其内聚力微调了病毒基因的表达。

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