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首页> 外文期刊>Microbiology and Immunology >In silico analysis of ORF1ab in coronavirus HKU1 genome reveals a unique putative cleavage site of coronavirus HKU1 3C-like protease.
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In silico analysis of ORF1ab in coronavirus HKU1 genome reveals a unique putative cleavage site of coronavirus HKU1 3C-like protease.

机译:在冠状病毒HKU1基因组中的ORF1ab的计算机分析中发现,冠状病毒HKU1 3C样蛋白酶具有独特的假定切割位点。

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摘要

Recently we have described the discovery and complete genome sequence of a novel coronavirus associated with pneumonia, coronavirus HKU1 (CoV-HKU1). In this study, a detailed in silico analysis of the ORF1ab, encoding the 7,182-amino acid replicase polyprotein in the CoV-HKU1 genome showed that the replicase polyprotein of CoV-HKU1 is cleaved by its papain-like proteases and 3C-like protease (3CL(pro)) into 16 polypeptides homologous to the corresponding polypeptides in other coronaviruses. Surprisingly, analysis of the putative cleavage sites of the 3CL(pro) revealed a unique putative cleavage site. In all known coronaviruses, the P1 positions at the cleavage sites of the 3CL(pro) are occupied by glutamine. This is also observed in CoV-HKU1, except for one site at the junction between nsp10 (helicase) and nsp11 (member of exonuclease family), where the P1 position is occupied by histidine. This amino acid substitution is due to a single nucleotide mutation in the CoV-HKU1 genome, CAG/A to CAT. This probably represents a novel cleavage site because the same mutation was consistently observed in CoV-HKU1 sequences from multiple specimens of different patients; the P2 and P1'-P12' positions of this cleavage site are consistent between CoV-HKU1 and other coronaviruses; and as the helicase is one of the most conserved proteins in coronaviruses, cleavage between nsp10 and nsp11 should be an essential step for the generation of the mature functional helicase. Experiments, including purification and C-terminal amino acid sequencing of the CoV-HKU1 helicase and trans-cleavage assays of the CoV-HKU1 3CL(pro) will confirm the presence of this novel cleavage site.
机译:最近,我们已经描述了与肺炎相关的新型冠状病毒,冠状病毒HKU1(CoV-HKU1)的发现和完整的基因组序列。在这项研究中,对CoF-HKU1基因组中编码7,182个氨基酸的复制酶多蛋白的ORF1ab进行了详细的计算机分析,结果表明CoV-HKU1的复制酶多蛋白被其木瓜蛋白酶和3C蛋白酶切割( 3CL(pro))分为与其他冠状病毒中相应多肽同源的16个多肽。出人意料的是,对3CL(pro)的假定裂解位点的分析显示了一个独特的假定裂解位点。在所有已知的冠状病毒中,谷氨酰胺占据了3CL(pro)裂解位点的P1位置。在CoV-HKU1中也观察到了这一点,除了在nsp10(解旋酶)和nsp11(核酸外切酶家族的成员)之间的连接处有一个位点,其中P1位置被组氨酸占据。这种氨基酸取代是由于CoV-HKU1基因组中的单核苷酸突变,即CAG / A到CAT。这可能代表了一个新的切割位点,因为在来自不同患者的多个标本的CoV-HKU1序列中始终观察到相同的突变; CoV-HKU1和其他冠状病毒之间该切割位点的P2和P1'-P12'位置一致;由于解旋酶是冠状病毒中最保守的蛋白质之一,因此在nsp10和nsp11之间进行切割应该是生成成熟功能解旋酶的重要步骤。包括CoV-HKU1解旋酶的纯化和C端氨基酸测序以及CoV-HKU1 3CL(pro)的反式切割实验在内的实验将证实该新型切割位点的存在。

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