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2
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本文引用的文献

1
When two strands are better than one: the mediators and modulators of the cellular responses to double-stranded RNA.当双链强于单链:细胞对双链RNA反应的介质与调节剂
Virology. 1996 May 15;219(2):339-49. doi: 10.1006/viro.1996.0259.
2
Hsp90 is required for the activity of a hepatitis B virus reverse transcriptase.热休克蛋白90是乙肝病毒逆转录酶活性所必需的。
Proc Natl Acad Sci U S A. 1996 Feb 6;93(3):1060-4. doi: 10.1073/pnas.93.3.1060.
3
Specific hepatitis B virus minus-strand DNA synthesis requires only the 5' encapsidation signal and the 3'-proximal direct repeat DR1.特定的乙型肝炎病毒负链DNA合成仅需要5'包装信号和3'近端直接重复序列DR1。
J Virol. 1996 Jan;70(1):585-9. doi: 10.1128/JVI.70.1.585-589.1996.
4
Hepatitis B virus genotype A rarely circulates as an HBe-minus mutant: possible contribution of a single nucleotide in the precore region.乙肝病毒A基因型很少以HBe阴性突变体的形式传播:前核心区单个核苷酸的可能作用。
J Virol. 1993 Sep;67(9):5402-10. doi: 10.1128/JVI.67.9.5402-5410.1993.
5
Identification of a new hepatitis B virus (HBV) genotype from Brazil that expresses HBV surface antigen subtype adw4.从巴西鉴定出一种表达乙肝病毒表面抗原亚型adw4的新型乙型肝炎病毒(HBV)基因型。
J Gen Virol. 1993 Aug;74 ( Pt 8):1627-32. doi: 10.1099/0022-1317-74-8-1627.
6
Complete genomes, phylogenetic relatedness, and structural proteins of six strains of the hepatitis B virus, four of which represent two new genotypes.六种乙肝病毒株的完整基因组、系统发育相关性及结构蛋白,其中四种代表两种新基因型。
Virology. 1994 Feb;198(2):489-503. doi: 10.1006/viro.1994.1060.
7
Interaction of hepatitis B virus X protein with a serine protease, tryptase TL2 as an inhibitor.乙型肝炎病毒X蛋白与一种丝氨酸蛋白酶——类胰蛋白酶TL2作为抑制剂的相互作用。
Oncogene. 1994 Feb;9(2):341-8.
8
The stem-loop structure of the cis-encapsidation signal is highly conserved in naturally occurring hepatitis B virus variants.顺式衣壳化信号的茎环结构在自然发生的乙型肝炎病毒变体中高度保守。
Virology. 1994 May 1;200(2):809-12. doi: 10.1006/viro.1994.1247.
9
Mutations in the pre-core region of hepatitis B virus serve to enhance the stability of the secondary structure of the pre-genome encapsidation signal.乙型肝炎病毒前核心区的突变有助于增强前基因组包装信号二级结构的稳定性。
Proc Natl Acad Sci U S A. 1994 Apr 26;91(9):4077-81. doi: 10.1073/pnas.91.9.4077.
10
Properties of hepatitis B virus pre-S1 deletion mutants.乙型肝炎病毒前S1缺失突变体的特性
Virology. 1994 Mar;199(2):292-300. doi: 10.1006/viro.1994.1127.

乙型肝炎病毒前基因组RNA 3'末端的修订二级结构模型。

A revised secondary structure model for the 3'-end of hepatitis B virus pregenomic RNA.

作者信息

Kidd A H, Kidd-Ljunggren K

机构信息

Department of Virology, University of Umeå, Sweden.

出版信息

Nucleic Acids Res. 1996 Sep 1;24(17):3295-301. doi: 10.1093/nar/24.17.3295.

DOI:10.1093/nar/24.17.3295
PMID:8811080
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC146111/
Abstract

The polymerase encoded by human hepatitis B virus, which has reverse transcriptase and RNase H activity, binds to its pregenomic RNA template in a two-step process involving a terminal redundancy. Both first strand and second strand DNA synthesis involve primer translocation and second strand synthesis involves a template jump. Three parts of the genome, including the so-called core promoter, are known to show deletions in strains usually arising after long-standing HBV infection, but also in some patients treated with interferon. A computer-based study of RNA template folding in the core promoter region, accommodating well-known point mutations, has generated a model for the 3' DR1 primer binding site as being part of a superstructure encompassing an already well-established stem-loop. Depending on the identity of nucleotides 1762 and 1764, the DR1 region may assume two alternative secondary structures which stabilize it as a primer binding site to different extents. Remarkably, one of these structures includes a pronounced loop which coincides with at least 12 related deletions seen in HBV DNA from different patients. Thus according to the model, the 5'- and 3'-ends of pregenomic RNA, which share primary sequences but have separate functions, are not structural equivalents. An RNA superstructure near the 3'-end of all HBV transcripts could have far-reaching implications for the modulation of both genome replication and post-transcriptional processing.

摘要

人类乙型肝炎病毒编码的聚合酶具有逆转录酶和核糖核酸酶H活性,它通过一个涉及末端冗余的两步过程与前基因组RNA模板结合。第一链和第二链DNA合成均涉及引物易位,第二链合成涉及模板跳跃。已知基因组的三个部分,包括所谓的核心启动子,在通常于长期HBV感染后出现的毒株中会出现缺失,但在一些接受干扰素治疗的患者中也会出现。一项基于计算机的对核心启动子区域RNA模板折叠的研究,考虑到了已知的点突变,生成了一个模型,将3' DR1引物结合位点视为一个超结构的一部分,该超结构包含一个已经确立的茎环。根据核苷酸1762和1764的身份,DR1区域可能呈现两种不同的二级结构,它们在不同程度上稳定其作为引物结合位点的功能。值得注意的是,这些结构之一包括一个明显的环,它与在来自不同患者的HBV DNA中看到的至少12个相关缺失相吻合。因此,根据该模型,前基因组RNA的5'端和3'端虽然共享一级序列但具有不同功能,并非结构等同。所有HBV转录本3'端附近的RNA超结构可能对基因组复制和转录后加工的调控产生深远影响。