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亲环蛋白A和B在体外激活丙型肝炎病毒RNA聚合酶的不同机制。

Different mechanisms of hepatitis C virus RNA polymerase activation by cyclophilin A and B in vitro.

作者信息

Weng Leiyun, Tian Xiao, Gao Yayi, Watashi Koichi, Shimotohno Kunitada, Wakita Takaji, Kohara Michinori, Toyoda Tetsuya

机构信息

Institut Pasteur of Shanghai, Chinese Academy of Sciences, Shanghai, People's Republic of China.

出版信息

Biochim Biophys Acta. 2012 Dec;1820(12):1886-92. doi: 10.1016/j.bbagen.2012.08.017. Epub 2012 Aug 28.

Abstract

BACKGROUND

Cyclophilins (CyPs) are cellular proteins that are essential to hepatitis C virus (HCV) replication. Since cyclosporine A was discovered to inhibit HCV infection, the CyP pathway contributing to HCV replication is a potential attractive stratagem for controlling HCV infection. Among them, CyPA is accepted to interact with HCV nonstructural protein (NS) 5A, although interaction of CyPB and NS5B, an RNA-dependent RNA polymerase (RdRp), was proposed first.

METHODS

CyPA, CyPB, and HCV RdRp were expressed in bacteria and purified using combination column chromatography. HCV RdRp activity was analyzed in vitro with purified CyPA and CyPB.

RESULTS

CyPA at a high concentration (50× higher than that of RdRp) but not at low concentration activated HCV RdRp. CyPB had an allosteric effect on genotype 1b RdRp activation. CyPB showed genotype specificity and activated genotype 1b and J6CF (2a) RdRps but not genotype 1a or JFH1 (2a) RdRps. CyPA activated RdRps of genotypes 1a, 1b, and 2a. CyPB may also support HCV genotype 1b replication within the infected cells, although its knockdown effect on HCV 1b replicon activity was controversial in earlier reports.

CONCLUSIONS

CyPA activated HCV RdRp at the early stages of transcription, including template RNA binding. CyPB also activated genotype 1b RdRp. However, their activation mechanisms are different.

GENERAL SIGNIFICANCE

These data suggest that both CyPA and CyPB are excellent targets for the treatment of HCV 1b, which shows the greatest resistance to interferon and ribavirin combination therapy.

摘要

背景

亲环蛋白(CyPs)是细胞蛋白,对丙型肝炎病毒(HCV)复制至关重要。自从发现环孢素A可抑制HCV感染以来,参与HCV复制的CyP途径是控制HCV感染的一个潜在有吸引力的策略。其中,虽然首先提出了CyPB与RNA依赖性RNA聚合酶(RdRp)即NS5B相互作用,但普遍认为CyPA与HCV非结构蛋白(NS)5A相互作用。

方法

CyPA、CyPB和HCV RdRp在细菌中表达,并使用组合柱色谱法进行纯化。使用纯化的CyPA和CyPB在体外分析HCV RdRp活性。

结果

高浓度(比RdRp高50倍)而非低浓度的CyPA激活HCV RdRp。CyPB对1b型RdRp激活具有变构效应。CyPB表现出基因型特异性,可激活1b型和J6CF(2a)型RdRp,但不能激活1a型或JFH1(2a)型RdRp。CyPA可激活1a型、1b型和2a型的RdRp。CyPB也可能支持感染细胞内的HCV 1b型复制,尽管其对HCV 1b复制子活性的敲低作用在早期报道中存在争议。

结论

CyPA在转录早期激活HCV RdRp,包括模板RNA结合。CyPB也可激活1b型RdRp。然而,它们的激活机制不同。

普遍意义

这些数据表明,CyPA和CyPB都是治疗HCV 1b型的理想靶点,HCV 1b型对干扰素和利巴韦林联合治疗表现出最大抗性。

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