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在非变性条件下纯化丙型肝炎病毒核心蛋白。

Purification of hepatitis C virus core protein in non-denaturing condition.

机构信息

Laboratory of Viral Infection, Research Institute for Microbial Diseases, Osaka University, Osaka 565-0871, Japan.

Laboratory of Viral Infection, Research Institute for Microbial Diseases, Osaka University, Osaka 565-0871, Japan; Department of Biochemistry and Molecular Biology, Faculty of Agriculture and Life Science, Hirosaki University, Japan.

出版信息

J Virol Methods. 2024 Jan;323:114852. doi: 10.1016/j.jviromet.2023.114852. Epub 2023 Nov 16.

Abstract

Hepatitis C virus (HCV) is the major cause of chronic hepatitis and hepatocellular carcinoma. Among its structural proteins, the HCV core protein has been implicated in liver disease. Understanding the role of HCV core proteins in viral diseases is crucial to elucidating disease mechanisms and identifying potential drug targets. However, purification challenges hinder the comprehensive elucidation of the structure and biochemical properties of HCV core proteins. In this study, we successfully solubilized bacterially expressed core protein using a high-salt and detergent-containing buffer and bypassed the denaturing-refolding process. Size-exclusion chromatography revealed three distinct peaks in the HCV-infected cell lysate, with the bacterially expressed soluble core protein corresponding to its second peak. Using a combination of affinity, size exclusion, and multi-modal chromatography purification techniques, we achieved a purity of > 95% for the core protein. Analytical ultracentrifugation revealed monomer formation in the solution. Far UV Circular dichroism spectroscopy identified 25.53% alpha helices and 20.26% beta sheets. These findings strongly suggest that the purified core proteins retained one of the native structures observed in HCV-infected cells.

摘要

丙型肝炎病毒(HCV)是慢性肝炎和肝细胞癌的主要病因。在其结构蛋白中,HCV 核心蛋白与肝病有关。了解 HCV 核心蛋白在病毒疾病中的作用对于阐明疾病机制和确定潜在的药物靶点至关重要。然而,纯化挑战阻碍了 HCV 核心蛋白结构和生化特性的全面阐明。在这项研究中,我们使用高盐和含去污剂的缓冲液成功地溶解了细菌表达的核心蛋白,并且绕过了变性-复性过程。分子筛层析显示 HCV 感染细胞裂解物中有三个不同的峰,细菌表达的可溶性核心蛋白对应于其第二个峰。通过组合亲和、分子筛和多模式色谱纯化技术,我们实现了核心蛋白纯度大于 95%。分析超速离心显示单体在溶液中形成。远紫外圆二色性光谱确定了 25.53%的α螺旋和 20.26%的β折叠。这些发现强烈表明,纯化的核心蛋白保留了 HCV 感染细胞中观察到的一种天然结构。

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