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Modulating the Function of the Measles Virus RNA-Dependent RNA Polymerase by Insertion of Green Fluorescent Protein into the Open Reading Frame

机译:通过将绿色荧光蛋白插入开放阅读框来调节麻疹病毒RNA依赖性RNA聚合酶的功能

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摘要

Measles virus (MV) is the type species of the Morbillivirus genus and its RNA-dependent RNA polymerase complex is comprised of two viral polypeptides, the large (L) and the phospho- (P) proteins. Sequence alignments of morbillivirus L polymerases have demonstrated the existence of three well-conserved domains (D1, D2, and D3) which are linked by two variable hinges (H1 and H2). Epitope tags (c-Myc) were introduced into H1 and H2 to investigate the tolerance of the variable regions to insertions and to probe the flexibility of the proposed domain structures to spatial reorientation. Insertion into H1 abolished polymerase activity whereas introduction into H2 had no effect. The open reading frame of enhanced green fluorescent protein was also inserted into the H2 region of the MV L gene to extend these observations. This resulted in a recombinant protein that was both functional and autofluorescent, although the overall polymerase activity was reduced by over 40%. Two recombinant viruses which contained the chimeric L genes EdtagL(MMc-mycM) and EdtagL(MMEGFPM) were generated. Tagged L proteins were detectable, by indirect immunofluorescence in the case of EdtagL(MMc-mycM) and by autofluorescence in the case of EdtagL(MMEGFPM). We suggest that D3 enjoys a limited conformational independence from the other domains, indicating that the L polymerases of the Mononegavirales may function as multidomain proteins.
机译:麻疹病毒(MV)是麻疹病毒属的类型种,其依赖于RNA的RNA聚合酶复合物由两种病毒多肽组成,即大蛋白(L)和磷蛋白(P)。麻疹病毒L聚合酶的序列比对证明存在三个保守的结构域(D1,D2和D3),它们通过两个可变的铰链(H1和H2)相连。抗原决定簇标签(c-Myc)被引入H1和H2中,以研究可变区对插入的耐受性,并探究拟议结构域结构对空间重新定向的灵活性。插入H1消除了聚合酶活性,而导入H2没有影响。增强的绿色荧光蛋白的开放阅读框也被插入到MV L基因的H2区域,以扩展这些观察结果。尽管总聚合酶活性降低了40%以上,但这产生了既具有功能又具有自发荧光的重组蛋白。产生了两种包含嵌合L基因EdtagL(MMc-mycM)和EdtagL(MMEGFPM)的重组病毒。标记的L蛋白可通过EdtagL(MMc-mycM)的间接免疫荧光和EdtagL(MMEGFPM)的自身荧光检测。我们建议D3与其他域享有有限的构象独立性,表明Mononegavirales的L聚合酶可能起多域蛋白的作用。

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