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CpAMs 诱导 HBV 衣壳组装,改变电泳迁移率:对抑制 pgRNA 包装机制的影响。

CpAMs induce assembly of HBV capsids with altered electrophoresis mobility: Implications for mechanism of inhibiting pgRNA packaging.

机构信息

Institute of Medicinal Biotechnology, Chinese Academy of Medical Science, Beijing, China; Baruch S. Blumberg Institute, Doylestown, PA, USA.

Baruch S. Blumberg Institute, Doylestown, PA, USA; Institute of Hepatology, Second Xiangya Hospital, Central South University, Changsha, Hunan Province, China.

出版信息

Antiviral Res. 2018 Nov;159:1-12. doi: 10.1016/j.antiviral.2018.09.001. Epub 2018 Sep 7.

Abstract

Native agarose gel electrophoresis-based particle gel assay has been commonly used for examination of hepatitis B virus (HBV) capsid assembly and pregenomic RNA encapsidation in HBV replicating cells. Interestingly, treatment of cells with several chemotypes of HBV core protein allosteric modulators (CpAMs) induced the assembly of both empty and DNA-containing capsids with faster electrophoresis mobility. In an effort to determine the physical basis of CpAM-induced capsid mobility shift, we found that the surface charge, but not the size, of capsids is the primary determinant of electrophoresis mobility. Specifically, through alanine scanning mutagenesis analysis of twenty-seven charged amino acids in core protein assembly domain and hinge region, we showed that except for K7 and E8, substitution of glutamine acid (E) or aspartic acid (D) on the surface of capsids reduced their mobility, but substitution of lysine (K) or arginine (R) on the surface of capsids increased their mobility in variable degrees. However, alanine substitution of the charged amino acids that are not exposed on the surface of capsid did not apparently alter capsid mobility. Hence, CpAM-induced electrophoresis mobility shift of capsids may reflect the global alteration of capsid structure that changes the exposure and/or ionization of charged amino acid side chains of core protein. Our findings imply that CpAM inhibition of pgRNA encapsidation is possibly due to the assembly of structurally altered nucleocapsids. Practically, capsid electrophoresis mobility shift is a diagnostic marker of compounds that target core protein assembly and predicts sensitivity of HBV strains to specific CpAMs.

摘要

基于天然琼脂糖凝胶电泳的粒子凝胶检测法已广泛用于乙型肝炎病毒 (HBV) 衣壳组装和前基因组 RNA 包裹的检测,在 HBV 复制细胞中。有趣的是,用几种乙型肝炎核心蛋白变构调节剂 (CpAMs) 处理细胞会诱导空衣壳和含 DNA 衣壳的组装,其电泳迁移率更快。为了确定 CpAM 诱导的衣壳迁移率变化的物理基础,我们发现衣壳的表面电荷而不是大小是电泳迁移率的主要决定因素。具体来说,通过对核心蛋白组装结构域和铰链区中 27 个带电氨基酸的丙氨酸扫描突变分析,我们表明,除了 K7 和 E8 外,在衣壳表面取代谷氨酸 (E) 或天冬氨酸 (D) 会降低其迁移率,但在衣壳表面取代赖氨酸 (K) 或精氨酸 (R) 会在不同程度上增加其迁移率。然而,在衣壳表面未暴露的带电氨基酸上进行丙氨酸取代并没有明显改变衣壳的迁移率。因此,CpAM 诱导的衣壳电泳迁移率变化可能反映了衣壳结构的全局改变,从而改变了核心蛋白带电氨基酸侧链的暴露和/或离子化。我们的发现表明,CpAM 抑制 pgRNA 包裹可能是由于结构改变的核衣壳的组装。实际上,衣壳电泳迁移率变化是靶向核心蛋白组装的化合物的诊断标志物,并预测了 HBV 株对特定 CpAMs 的敏感性。

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