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利用15肽噬菌体展示文库分析与严重急性呼吸综合征冠状病毒核衣壳蛋白相互作用的蛋白质。

Analysis of proteins that interact with nucleocapsid protein of SARS-CoV using 15-mer phage-displayed library.

作者信息

Liu ZhengXue, Wang ZhanHui, Liu YingLe, Dong Wei, Qi YiPeng

机构信息

1State Key Laboratory of Virology, College of Life Science, Wuhan University, Wuhan, 430072 China.

2Biology Department, Chongqing Three Gorges University, Chongqing, 404000 China.

出版信息

Chin Sci Bull. 2007;52(15):2072-2080. doi: 10.1007/s11434-007-0303-0.

Abstract

Analysis of proteins that interact with N protein of SARS-CoV using 15-mer phage-displayed library will help to explore the virus pathogenesis and to develop new drugs and vaccines against SARS. In this study, we cloned, expressed and purified N protein of SARS-CoV. This 46-kD N protein was verified by SDS-PAGE and Western-blot. Then, the peptides binding-specific to N protein were identified using 15-mer phage-displayed library. Surprisingly, all of the 89 clones from monoclonal ELISA were positive (S/N>2.1) and the result was further confirmed experimentally once again. Six N protein-binding peptides, designated separately as SNA1, SNA2, SNA4, SNA5, SNA9 and SNG11, were selected for sequencing. Sequence analysis suggested that SNA5 shared approximatively 100% sequence identity to SNA4, SNA2, SNA9 and SNA1. In addition, the binding specificity of the 15-mer peptides with the SARS-CoV N protein was further demonstrated by blocking ELISA using the synthetical 15-mer peptide according to the deduced amino acid sequence of SNA5. Also, the deduced amino sequence of SNA5 was compared with proteins in translated database using the tblastx program, and the results showed that the proteins with the highest homology were Ubiquinol-cytochrome c reductase iron-sulfur subunits (UCRI or UQCR), otherwise known as the Rieske iron-sulfur proteins (RISP). Notablely, in the [2Fe-2S] redox centre of UCRI, there were 6 residues [GGW(Y)F(Y)CP] compatible to the residues (position 2→7, GGWFCP7) of the NH2-terminal of the 15-mer peptide, which indicated higher binding specificity between the N protein of SARS-CoV and the redox centre of UCRI to some extent. Here, the possible molecular mechanisms of SARS-CoV N protein in the pathogenesis of SARS are discussed.

摘要

利用15肽噬菌体展示文库分析与严重急性呼吸综合征冠状病毒(SARS-CoV)N蛋白相互作用的蛋白质,将有助于探索病毒发病机制,并开发针对SARS的新药和疫苗。在本研究中,我们克隆、表达并纯化了SARS-CoV的N蛋白。通过SDS-PAGE和Western印迹对这种46-kD的N蛋白进行了验证。然后,利用15肽噬菌体展示文库鉴定了与N蛋白特异性结合的肽段。令人惊讶的是,来自单克隆ELISA的89个克隆均为阳性(S/N>2.1),并且该结果再次通过实验得到进一步证实。选择了6个与N蛋白结合的肽段,分别命名为SNA1、SNA2、SNA4、SNA5、SNA9和SNG11进行测序。序列分析表明,SNA5与SNA4、SNA2、SNA9和SNA1的序列同一性约为100%。此外,根据SNA5推导的氨基酸序列合成15肽,通过阻断ELISA进一步证明了15肽与SARS-CoV N蛋白的结合特异性。同时,使用tblastx程序将SNA5推导的氨基酸序列与翻译数据库中的蛋白质进行比较,结果显示同源性最高的蛋白质是泛醇-细胞色素c还原酶铁硫亚基(UCRI或UQCR),也称为里斯克铁硫蛋白(RISP)。值得注意的是,在UCRI的[2Fe-2S]氧化还原中心,有6个残基[GGW(Y)F(Y)CP]与15肽NH2末端的残基(第2至7位,GGWFCP7)兼容,这在一定程度上表明SARS-CoV N蛋白与UCRI氧化还原中心之间具有更高的结合特异性。在此,讨论了SARS-CoV N蛋白在SARS发病机制中的可能分子机制。

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