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丙型肝炎病毒B型非结构蛋白5B编码的依赖RNA的RNA聚合酶活性。

RNA-dependent RNA polymerase activity encoded by GB virus-B non-structural protein 5B.

作者信息

Zhong W, Ingravallo P, Wright-Minogue J, Uss A S, Skelton A, Ferrari E, Lau J Y, Hong Z

机构信息

Department of Antiviral Therapy, Schering-Plough Research Institute, Kenilworth, NJ 07033-0539, USA.

出版信息

J Viral Hepat. 2000 Sep;7(5):335-42. doi: 10.1046/j.1365-2893.2000.00226.x.

Abstract

Phylogenetic analysis and polyprotein organization comparison have shown that GB virus-B (GBV-B) is closely related to hepatitis C virus (HCV). In this study, the coding region for GBV-B non-structural protein 5B (NS5B) was isolated by reverse transcription-polymerase chain reaction (RT-PCR) from pooled serum of GBV-B-infected tamarins. Expression of soluble GBV-B NS5B protein in Escherichia coli was achieved by removal of a 19-amino acid hydrophobic domain at the C-terminus of the protein. The truncated GBV-B NS5B (NS5BDeltaCT19) was purified to homogeneity and shown to possess an RNA-dependent RNA polymerase (RdRp) activity in both gel-based and scintillation proximity assays. NS5BDeltaCT19 required the divalent cation Mn2+ for enzymatic activity, at an optimal concentration of 15 mM. Interestingly, Mg2+, at concentrations up to 20 mM, did not support the GBV-B NS5B activity. This differs from HCV NS5B where both Mn2+ and Mg2+ can support RdRp activity. Zn2+ was found to inhibit the activity of GBV-B NS5B, with a 50% inhibitory concentration (IC50) of 5-10 microM. Higher concentrations of monovalent salts (NaCl or KCl > 100 mM) and glycerol (> 3%) were also inhibitory. NS5BDeltaCT19 was able to bind to RNA homopolymers, but utilized most efficiently poly(C), the one with the lowest binding affinity for RNA synthesis. Mutational analysis of GBV-B NS5B demonstrated the importance of several conserved sequence motifs for enzymatic activity. Based on sequence homology ( approximately 37% identity and 52% similarity) between GBV-B and HCV NS5B proteins, the active GBV-B RdRp provides a good surrogate assay system for HCV polymerase studies.

摘要

系统发育分析和多聚蛋白组织比较表明,GB病毒B型(GBV-B)与丙型肝炎病毒(HCV)密切相关。在本研究中,通过逆转录聚合酶链反应(RT-PCR)从感染GBV-B的绢毛猴的混合血清中分离出GBV-B非结构蛋白5B(NS5B)的编码区。通过去除该蛋白C末端的19个氨基酸疏水结构域,在大肠杆菌中实现了可溶性GBV-B NS5B蛋白的表达。截短的GBV-B NS5B(NS5BDeltaCT19)被纯化至同质,并在基于凝胶的分析和闪烁邻近分析中均显示具有RNA依赖性RNA聚合酶(RdRp)活性。NS5BDeltaCT19的酶活性需要二价阳离子Mn2+,最佳浓度为15 mM。有趣的是,浓度高达20 mM的Mg2+不支持GBV-B NS5B的活性。这与HCV NS5B不同,HCV NS5B中Mn2+和Mg2+均可支持RdRp活性。发现Zn2+可抑制GBV-B NS5B的活性,50%抑制浓度(IC50)为5-10 microM。更高浓度的单价盐(NaCl或KCl>100 mM)和甘油(>3%)也具有抑制作用。NS5BDeltaCT19能够与RNA同聚物结合,但最有效地利用了聚(C),其对RNA合成的结合亲和力最低。GBV-B NS5B的突变分析证明了几个保守序列基序对酶活性的重要性。基于GBV-B和HCV NS5B蛋白之间的序列同源性(约37%的同一性和52%的相似性),活性GBV-B RdRp为HCV聚合酶研究提供了一个良好的替代检测系统。

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