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Chikungunya virus infectivity, RNA replication and non-structural polyprotein processing depend on the nsP2 protease’s active site cysteine residue

机译:Chikungunya病毒感染性,RNA复制和非结构多蛋白处理取决于NSP2蛋白酶的活性位点半胱氨酸残留物

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Chikungunya virus (CHIKV), genus Alphavirus, family Togaviridae, has a positive-stand RNA genome approximately 12?kb in length. In infected cells, the genome is translated into non-structural polyprotein P1234, an inactive precursor of the viral replicase, which is activated by cleavages carried out by the non-structural protease, nsP2. We have characterized CHIKV nsP2 using both cell-free and cell-based assays. First, we show that Cys478 residue in the active site of CHIKV nsP2 is indispensable for P1234 processing. Second, the substrate requirements of CHIKV nsP2 are quite similar to those of nsP2 of related Semliki Forest virus (SFV). Third, substitution of Ser482 residue, recently reported to contribute to the protease activity of nsP2, with Ala has almost no negative effect on the protease activity of CHIKV nsP2. Fourth, Cys478 to Ala as well as Trp479 to Ala mutations in nsP2 completely abolished RNA replication in CHIKV and SFV trans-replication systems. In contrast, trans-replicases with Ser482 to Ala mutation were similar to wild type counterparts. Fifth, Cys478 to Ala as well as Trp479 to Ala mutations in nsP2 abolished the rescue of infectious virus from CHIKV RNA transcripts while Ser482 to Ala mutation had no effect. Thus, CHIKV nsP2 is a cysteine protease.
机译:Chikungunya病毒(Chikv),属alphavirus,Family togaviridae,具有大约12?Kb的正面RNA基因组。在感染的细胞中,基因组被翻译成非结构多蛋白P1234,是病毒复制酶的惰性前体,其通过由非结构蛋白酶NSP2进行的切割激活。我们使用无细胞和基于细胞的测定来表征Chikv NSP2。首先,我们表明CHIKV NSP2的活性位点中的CYS478残基对于P1234加工是必不可少的。其次,Chikv NSP2的底物要求与相关Semliki林病毒(SFV)的NSP2非常相似。第三,替代Ser482残基,最近据报道有助于NSP2的蛋白酶活性,ALA几乎没有对Chikv NSP2的蛋白酶活性产生负面影响。第四,CYS478至ALA以及NSP2中的ALA突变的TRP479完全废除了CHIKV和SFV转换系统中的RNA复制。相反,具有SER482至ALA突变的反式复制酶类似于野生型对应物。第五,Cys478至Ala以及NSP2中的Ala突变的TRP479废除了Chikv RNA转录物的传染性病毒,而Ser482至Ala突变没有效果。因此,Chikv NSP2是半胱氨酸蛋白酶。

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