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首页> 外文期刊>Chinese Medical Journal >Variation analysis of the severe acute respiratory syndrome coronavirus putative non-structural protein 2 gene and construction of three-dimensional model
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Variation analysis of the severe acute respiratory syndrome coronavirus putative non-structural protein 2 gene and construction of three-dimensional model

机译:重症急性呼吸综合征冠状病毒推定非结构蛋白2基因变异分析及三维模型构建

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摘要

Background The rapid transmission and high mortality rate made severe acute respiratory syndrome (SARS) a global threat for which no efficacious therapy is available now. Without sufficient knowledge about the SARS coronavirus (SARS-CoV) , it is impossible to define the candidate for the anti-SARS targets. The putative non-structural protein 2 (nsp2) (3CL~(pro), following the nomenclature by Gao et al, also known as nsp5 in Snidjer et al) of SARS-CoV plays an important role in viral transcription and replication, and is an attractive target for anti-SARS drug development, so we carried on this study to have an insight into putative polymerase nsp2 of SARS-CoV Guangdong ( GD) strain. Methods The SARS-CoV strain was isolated from a SARS patient in Guangdong, China, and cultured in Vero E6 cells. The nsp2 gene was amplified by reverse transcription-polymerase chain reaction (RT-PCR) and cloned into eukaryotic expression vector pCI-neo ( pCI-neosp2 ). Then the recombinant eukaryotic expression vector pCI-neosp2 was transfected into COS-7 cells using lipofectin reagent to express the nsp2 protein. The expressive protein of SARS-CoV nsp2 was analyzed by 7% sodium dodecylsulfate polyacrylamide gel electrophoresis (SDS-PAGE). The nucleotide sequence and protein sequence of GD nsp2 were compared with that of other SARS-CoV strains by nucleotide-nucleotide basic local alignment search tool ( BLASTN) and protein-protein basic local alignment search tool ( BLASTP) to investigate its variance trend during the transmission. The secondary structure of GD strain and that of other strains were predicted by Garnier-Osguthorpe-Robson ( GOR) Secondary Structure Prediction. Three-dimensional-PSSM Protein Fold Recognition (Threading) Server was employed to construct the three-dimensional model of the nsp2 protein. Results The putative polymerase nsp2 gene of GD strain was amplified by RT-PCR. The eukaryotic expression vector (pCI-neosp2) was constructed and expressed the protein in COS-7 cells successfully. The result of sequencing and sequence comparison with other SARS-CoV strains showed that nsp2 gene was relatively conservative during the transmission and total five base sites mutated in about 100 strains investigated, three of which in the early and middle phases caused synonymous mutation, and another two base sites variation in the late phase resulted in the amino acid substitutions and secondary structure changes. The three-dimensional structure of the nsp2 protein was successfully constructed. Conclusions The results suggest that polymerase nsp2 is relatively stable during the phase of epidemic. The amino acid and secondary structure change may be important for viral infection. The fact that majority of single nucleotide variations ( SNVs) are predicted to cause synonymous, as well as the result of low mutation rate of nsp2 gene in the epidemic variations, indicates that the nsp2 is conservative and could be a target for anti-SARS drugs. The three-dimensional structure result indicates that the nsp2 protein of GD strain is high homologous with 3CL~(pro) of SARS-CoV urbani strain, 3CL~(pro) of transmissible gastroenteritis virus and 3CL~(pro) of human coronavirus 229E strain, which further suggests that nsp2 protein of GD strain possesses the activity of 3CL~(pro).
机译:背景技术快速传播和高死亡率使严重急性呼吸综合征(SARS)成为全球性威胁,目前尚无有效的治疗方法。没有足够的SARS冠状病毒(SARS-CoV)知识,就不可能为抗SARS靶标确定候选对象。 SARS-CoV的推定非结构蛋白2(nsp2)(3CL〜(pro),按照Gao等人的命名,在Snidjer等人中也称为nsp5)在病毒转录和复制中起着重要作用,抗SARS药物开发的一个有吸引力的目标,因此我们进行了这项研究,以了解SARS-CoV Guangdong(GD)菌株的推定聚合酶nsp2。方法从中国广东省的一名SARS患者中分离出SARS-CoV株,并在Vero E6细胞中进行培养。通过逆转录-聚合酶链反应(RT-PCR)扩增nsp2基因,并将其克隆到真核表达载体pCI-neo(pCI-neo / nsp2)中。然后用脂质转染试剂将重组真核表达载体pCI-neo / nsp2转染到COS-7细胞中,表达nsp2蛋白。通过7%十二烷基硫酸钠聚丙烯酰胺凝胶电泳(SDS-PAGE)分析SARS-CoV nsp2的表达蛋白。通过核苷酸-核苷酸基本局部比对搜索工具(BLASTN)和蛋白-蛋白质基本局部比对搜索工具(BLASTP),将GD nsp2的核苷酸序列和蛋白质序列与其他SARS-CoV菌株的核苷酸和蛋白质序列进行比较,以研究其在变异过程中的变化趋势。传播。 GD菌株和其他菌株的二级结构通过Garnier-Osguthorpe-Robson(GOR)二级结构预测进行了预测。使用三维PSSM蛋白质折叠识别(线程)服务器来构建nsp2蛋白质的三维模型。结果通过RT-PCR扩增出GD菌株推定的聚合酶nsp2基因。构建了真核表达载体pCI-neo / nsp2,并在COS-7细胞中成功表达了该蛋白。测序和与其他SARS-CoV菌株的比较结果表明,nsp2基因在传播过程中相对保守,在大约100个菌株中共有五个碱基发生了突变,其中三个在早期和中期引起了同义突变,另一个后期两个碱基的变化导致氨基酸取代和二级结构变化。 nsp2蛋白的三维结构已成功构建。结论结果表明,聚合酶nsp2在流行阶段相对稳定。氨基酸和二级结构的变化可能对病毒感染很重要。预测大多数单核苷酸变异(SNV)会引起同义,以及流行变异中nsp2基因的低突变率的结果表明,nsp2是保守的,可能成为抗SARS药物的靶标。三维结构结果表明,GD菌株的nsp2蛋白与SARS-CoV urbani菌株的3CL〜(pro),可传播的胃肠炎病毒的3CL〜(pro)和人冠状病毒229E株的3CL〜(pro)具有高度同源性。进一步表明GD菌株的nsp2蛋白具有3CL〜(pro)的活性。

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