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首页> 外文期刊>Virology >Mutations in conserved domains IV and VI of the large (L) subunit of the sendai virus RNA polymerase give a spectrum of defective RNA synthesis phenotypes.
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Mutations in conserved domains IV and VI of the large (L) subunit of the sendai virus RNA polymerase give a spectrum of defective RNA synthesis phenotypes.

机译:仙台病毒RNA聚合酶大(L)亚基保守结构域IV和VI中的突变产生了一系列有缺陷的RNA合成表型。

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The Sendai virus RNA polymerase is a complex of two virus-encoded proteins, the phosphoprotein (P) and the large (L) protein. When aligned with amino acid sequences of L proteins from other negative-sense RNA viruses, the Sendai L protein contains six regions of good conservation, designated domains I-VI, which have been postulated to be important for the various enzymatic activities of the polymerase. To directly address the roles of domains IV and VI, 14 site-directed mutations were constructed either by changing clustered charged amino acids to ala or by substituting selected Sendai L amino acids with the corresponding sequence from measles virus L. Each mutant L protein was tested for its ability to transcribe and replicate the Sendai genome. The series of mutations created a spectrum of phenotypes, from those with significant, near wild-type, activity to those being completely defective for all RNA synthesis. The inactive L proteins, however, were still able to bind P protein and form a polymerase capable of binding the nucleocapsid template. The remainder of the mutations reduced, but did not abolish, enzymatic activity and included one mutant with a specific defect in the synthesis of the leader RNA compared with mRNA, and three mutants that replicated genome RNA much more efficiently in vivo than in vitro. Together, these data suggest that even within a domain, the function of the Sendai L protein is likely to be very complex. In addition, SS3 and SS10 L in domain IV and SS13 L in domain VI were shown to be temperature-sensitive. Both SS3 and SS10 gave significant, although not wild-type, activity at 32 degrees C; however, each was completely inactivated for all RNA synthesis at 37 and 39.6 degrees C. SS13 was completely inactive only when synthesized at the higher temperature. Each polymerase synthesized at 32 degrees C could only be partially heat inactivated in vitro at 39.6 degrees C, suggesting that inactivation involves both thermal lability of the protein and temperature sensitivity for its synthesis. Copyright 2000 Academic Press.
机译:仙台病毒RNA聚合酶是两种病毒编码蛋白,磷蛋白(P)和大蛋白(L)的复合体。当与来自其他负义RNA病毒的L蛋白的氨基酸序列比对时,仙台L蛋白包含六个保存良好的区域,称为结构域I-VI,据推测对聚合酶的各种酶活性至关重要。为了直接解决结构域IV和VI的作用,通过将簇状带电荷的氨基酸更改为ala或通过用麻疹病毒L的相应序列替换选定的仙台L氨基酸,构建了14个定点突变。测试了每种突变L蛋白因为它具有转录和复制仙台基因组的能力。一系列突变产生了一系列表型,从具有显着,近乎野生型活性的表型到对所有RNA合成完全有缺陷的表型。然而,无活性的L蛋白仍然能够结合P蛋白并形成能够结合核衣壳模板的聚合酶。其余的突变降低了酶的活性,但没有消除,包括一个与mRNA相比在前导RNA合成中具有特定缺陷的突变体,以及三个在体内比在体外更有效地复制基因组RNA的突变体。这些数据加在一起表明,即使在一个域内,仙台L蛋白的功能也可能非常复杂。另外,显示域IV中的SS3和SS10 L和域VI中的SS13 L对温度敏感。 SS3和SS10在32摄氏度时都具有显着的活性,尽管不是野生型。但是,在37和39.6摄氏度下,所有RNA合成均被完全灭活。SS13仅在较高温度下合成时才完全失活。在32摄氏度下合成的每种聚合酶只能在39.6摄氏度下在体外进行部分热失活,这表明该失活涉及蛋白质的热不稳定性和其合成的温度敏感性。版权所有2000学术出版社。

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