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乙型肝炎病毒聚合酶的体外活性:对不同金属离子和病毒ε茎环的需求

In vitro activity of hepatitis B virus polymerase: requirement for distinct metal ions and the viral epsilon stem-loop.

作者信息

Urban M, McMillan D J, Canning G, Newell A, Brown E, Mills J S, Jupp R

机构信息

Roche Discovery Welwyn, Welwyn Garden City, Herts, UK.

出版信息

J Gen Virol. 1998 May;79 ( Pt 5):1121-31. doi: 10.1099/0022-1317-79-5-1121.

Abstract

Hepadnaviruses have a complex replication cycle which includes reverse transcription of the pregenomic RNA. The initial step in this process in hepatitis B virus (HBV) requires the viral polymerase to engage a highly stable region of secondary structure within the pregenomic RNA termed the epsilon stem-loop. While reverse transcriptases belonging to the retrovirus family use a specific cellular tRNA as primer, HBV polymerase utilizes a tyrosine residue located within its own N terminus. Therefore, the first deoxyribonucleotide is covalently coupled to HBV polymerase prior to extension of the DNA strand by conventional reverse transcription. We have expressed HBV polymerase in a baculovirus and following purification have found it to be active with respect to protein-priming and reverse transcription of copurified RNA. Importantly, we found both of these processes to be critically dependent on the presence of the epsilon stem-loop. The metal ion preferences of HBV polymerase were also investigated for both the protein-priming and reverse transcription activities of this enzyme. Reverse transcription was dependent on magnesium, with an optimal concentration of 5 mM. However, protein-priming was strongly favoured by manganese ions and was optimal at a concentration of 1 mM. Thus, using manganese as sole source of metal ions our activity assay is restricted to the protein-priming event and will allow the search for novel antivirals specifically blocking this unique mechanism.

摘要

嗜肝DNA病毒具有复杂的复制周期,其中包括前基因组RNA的逆转录。在乙型肝炎病毒(HBV)中,这一过程的初始步骤要求病毒聚合酶结合前基因组RNA内一个高度稳定的二级结构区域,即ε茎环。虽然属于逆转录病毒家族的逆转录酶使用特定的细胞tRNA作为引物,但HBV聚合酶利用其自身N端的一个酪氨酸残基。因此,在通过常规逆转录延伸DNA链之前,第一个脱氧核糖核苷酸与HBV聚合酶共价偶联。我们在杆状病毒中表达了HBV聚合酶,纯化后发现它在蛋白质引发和共纯化RNA的逆转录方面具有活性。重要的是,我们发现这两个过程都严重依赖于ε茎环的存在。我们还研究了HBV聚合酶在该酶的蛋白质引发和逆转录活性方面对金属离子的偏好。逆转录依赖于镁,最佳浓度为5 mM。然而,蛋白质引发强烈偏好锰离子,最佳浓度为1 mM。因此,使用锰作为唯一的金属离子来源,我们的活性测定仅限于蛋白质引发事件,这将有助于寻找特异性阻断这种独特机制的新型抗病毒药物。

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