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鸭乙型肝炎病毒前基因组RNA包装所需的顺式作用序列。

cis-acting sequences required for encapsidation of duck hepatitis B virus pregenomic RNA.

作者信息

Hirsch R C, Loeb D D, Pollack J R, Ganem D

机构信息

Department of Microbiology, University of California Medical Center, San Francisco 94143-0502.

出版信息

J Virol. 1991 Jun;65(6):3309-16. doi: 10.1128/JVI.65.6.3309-3316.1991.

Abstract

Hepadnavirus reverse transcription requires that pregenomic RNA first be selectively packaged into a cytoplasmic core particle. This process presumably requires the presence of specific recognition sequences on the pregenomic RNA. To define the cis-acting sequences required for pregenome encapsidation in the duck hepatitis B virus (DHBV), we assayed the packaging efficiency of a series of pregenomic RNA deletion mutants and hybrid DHBV/lacZ fusion transcripts. The 5' boundary of the packaging signal lies within the precore region, starting approximately 35 nucleotides from the cap site of pregenomic RNA; thus, the DR1 sequence required for proper viral DNA synthesis is not included in this signal. To define the 3' boundary of the encapsidation signal, fusion transcripts bearing foreign (lacZ) sequences fused to DHBV at different sites 3' to the pregenomic RNA start site were examined. A surprisingly large region of the DHBV genome proved to be required for packaging of such chimeras, which are efficiently encapsidated only when they contain the first 1,200 to 1,400 nucleotides of DHBV pregenomic RNA. However, mutant genomes bearing insertions within this region are packaged efficiently, making it likely that the actual recognition elements for encapsidation are smaller discontinuous sequences located within this region.

摘要

嗜肝DNA病毒的逆转录要求前基因组RNA首先被选择性地包装到细胞质核心颗粒中。这个过程大概需要在前基因组RNA上存在特定的识别序列。为了确定鸭乙型肝炎病毒(DHBV)前基因组衣壳化所需的顺式作用序列,我们检测了一系列前基因组RNA缺失突变体和杂交DHBV/lacZ融合转录本的包装效率。包装信号的5'边界位于前核心区域内,从前基因组RNA的帽位点开始大约35个核苷酸处;因此,正确的病毒DNA合成所需的DR1序列不包括在这个信号中。为了确定衣壳化信号的3'边界,我们检测了在前基因组RNA起始位点3'端不同位点与DHBV融合的带有外源(lacZ)序列的融合转录本。事实证明,DHBV基因组中一个惊人的大区域对于此类嵌合体的包装是必需的,只有当它们包含DHBV前基因组RNA的前1200至1400个核苷酸时,这些嵌合体才能被有效地包装。然而,在这个区域内带有插入片段的突变基因组能被有效地包装,这使得衣壳化的实际识别元件可能是位于这个区域内较小的不连续序列。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1a0e/240989/3ab729c8dac0/jvirol00049-0560-a.jpg

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