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Encapsidated hepatitis B virus reverse transcriptase is poised on an ordered RNA lattice

机译:衣壳化的乙型肝炎病毒逆转录酶置于有序的RNA格上

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摘要

Assembly of a hepatitis B virus (HBV) virion begins with the formation of an RNA-filled core composed of a symmetrical capsid (built of core protein), viral pregenomic RNA, and viral reverse transcriptase. To generate the circular dsDNA genome of HBV, reverse transcription requires multiple template switches within the confines of the capsid. To date, most anti-HBV therapeutics target this reverse transcription process. The detailed molecular mechanisms of this crucial process are poorly understood because of the lack of structural information. We hypothesized that capsid, RNA, and viral reverse transcriptase would need a precise geometric organization to accomplish reverse transcription. Here we present the asymmetric structure of authentic RNA-filled cores, determined to 14.5-Å resolution from cryo-EM data. Capsid and RNA are concentric. On the interior of the RNA, we see a distinct donut-like density, assigned to viral reverse transcriptase, which pins the viral pregenomic RNA to the capsid inner surface. The observation of a unique ordered structure inside the core suggests that assembly and the first steps of reverse transcription follow a single, determinate pathway and strongly suggests that all subsequent steps in DNA synthesis do as well.
机译:乙型肝炎病毒(HBV)病毒粒子的组装始于RNA填充核心的形成,该核心由对称衣壳(由核心蛋白构建),病毒前基因组RNA和病毒逆转录酶组成。为了产生HBV的环状dsDNA基因组,逆转录需要在衣壳范围内进行多个模板转换。迄今为止,大多数抗HBV治疗药物都针对这种逆转录过程。由于缺乏结构信息,人们对该关键过程的详细分子机理了解甚少。我们假设衣壳,RNA和病毒逆转录酶将需要精确的几何结构来完成逆转录。在这里,我们介绍了真实的RNA填充核心的不对称结构,根据冷冻电磁数据确定其分辨率为14.5Å。衣壳和RNA是同心的。在RNA的内部,我们看到分配给病毒逆转录酶的独特的甜甜圈状密度,该密度将病毒前基因组RNA固定在衣壳的内表面。在核内观察到独特的有序结构表明组装和逆转录的第一步遵循单一的确定途径,并且强烈暗示DNA合成中的所有后续步骤也是如此。

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