首页> 美国卫生研究院文献>The EMBO Journal >Semliki Forest virus mRNA capping enzyme requires association with anionic membrane phospholipids for activity.
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Semliki Forest virus mRNA capping enzyme requires association with anionic membrane phospholipids for activity.

机译:Semliki森林病毒mRNA封闭酶需要与阴离子膜磷脂缔合才能发挥作用。

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摘要

The replication complexes of all positive strand RNA viruses of eukaryotes are associated with membranes. In the case of Semliki Forest virus (SFV), the main determinant of membrane attachment seems to be the virus-encoded non-structural protein NSP1, the capping enzyme of the viral mRNAs, which has guanine-7-methyltransferase and guanylyltransferase activities. We show here that both enzymatic activities of SFV NSP1 are inactivated by detergents and reactivated by anionic phospholipids, especially phosphatidylserine. The region of NSP1 responsible for binding to membranes as well as to liposomes was mapped to a short segment, which is conserved in the large alphavirus-like superfamily of viruses. A synthetic peptide of 20 amino acids from the putative binding site competed with in vitro synthesized NSP1 for binding to liposomes containing phosphatidylserine. These findings suggest a molecular mechanism by which RNA virus replicases attach to intracellular membranes and why they depend on the membranous environment.
机译:真核生物的所有正链RNA病毒的复制复合物都与膜相关。就Semliki Forest病毒(SFV)而言,膜附着的主要决定因素似乎是病毒编码的非结构蛋白NSP1,即病毒mRNA的加帽酶,具有鸟嘌呤7-甲基转移酶和鸟苷基转移酶活性。我们在这里显示,SFV NSP1的两种酶活性均被去污剂灭活,并被阴离子磷脂(尤其是磷脂酰丝氨酸)重新激活。 NSP1负责与膜以及脂质体结合的区域被定位到一个短片段,该片段在大型的类似alphavirus的病毒超家族中被保留。来自推测的结合位点的20个氨基酸的合成肽与体外合成的NSP1竞争结合至含有磷脂酰丝氨酸的脂质体。这些发现表明RNA病毒复制物附着于细胞内膜的分子机制,以及它们为何依赖于膜环境的原因。

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