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乙型肝炎病毒复制

Hepatitis B virus replication.

作者信息

Beck Juergen, Nassal Michael

机构信息

Department of Internal Medicine II/Molecular Biology, University Hospital Freiburg, Hugstetter Street 55, D-79106 Freiburg, Germany.

出版信息

World J Gastroenterol. 2007 Jan 7;13(1):48-64. doi: 10.3748/wjg.v13.i1.48.

Abstract

Hepadnaviruses, including human hepatitis B virus (HBV), replicate through reverse transcription of an RNA intermediate, the pregenomic RNA (pgRNA). Despite this kinship to retroviruses, there are fundamental differences beyond the fact that hepadnavirions contain DNA instead of RNA. Most peculiar is the initiation of reverse transcription: it occurs by protein-priming, is strictly committed to using an RNA hairpin on the pgRNA, epsilon, as template, and depends on cellular chaperones; moreover, proper replication can apparently occur only in the specialized environment of intact nucleocapsids. This complexity has hampered an in-depth mechanistic understanding. The recent successful reconstitution in the test tube of active replication initiation complexes from purified components, for duck HBV (DHBV), now allows for the analysis of the biochemistry of hepadnaviral replication at the molecular level. Here we review the current state of knowledge at all steps of the hepadnaviral genome replication cycle, with emphasis on new insights that turned up by the use of such cell-free systems. At this time, they can, unfortunately, not be complemented by three-dimensional structural information on the involved components. However, at least for the epsilon RNA element such information is emerging, raising expectations that combining biophysics with biochemistry and genetics will soon provide a powerful integrated approach for solving the many outstanding questions. The ultimate, though most challenging goal, will be to visualize the hepadnaviral reverse transcriptase in the act of synthesizing DNA, which will also have strong implications for drug development.

摘要

嗜肝DNA病毒,包括人类乙型肝炎病毒(HBV),通过RNA中间体——前基因组RNA(pgRNA)的逆转录进行复制。尽管与逆转录病毒有这种亲缘关系,但除了嗜肝DNA病毒颗粒含有DNA而非RNA这一事实外,它们还存在根本差异。最特别的是逆转录的起始:它通过蛋白质引发发生,严格依赖于以pgRNA上的一个RNA发夹结构——ε作为模板,并且依赖于细胞伴侣;此外,正常复制显然只能在完整核衣壳的特殊环境中发生。这种复杂性阻碍了对其深入的机制理解。最近,利用纯化成分成功在试管中重建了鸭乙型肝炎病毒(DHBV)的活性复制起始复合物,现在可以在分子水平上分析嗜肝DNA病毒复制的生物化学过程。在这里,我们综述了嗜肝DNA病毒基因组复制周期各个步骤的当前知识状态,重点关注使用这种无细胞系统所带来的新见解。遗憾的是,目前还没有关于所涉及成分的三维结构信息来补充这些研究。然而,至少对于εRNA元件,这样的信息正在出现,这使得人们期望将生物物理学与生物化学和遗传学相结合,很快就能为解决许多悬而未决的问题提供一种强大的综合方法。最终目标,也是最具挑战性的目标,将是可视化嗜肝DNA病毒逆转录酶合成DNA的过程,这对药物开发也将具有重要意义。

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