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Alternative Processing of Hepatitis Delta Virus Antigenomic RNA Transcripts

机译:肝炎三角洲病毒抗基因组RNA转录本的替代处理

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摘要

Intrinsic to the life cycle of hepatitis delta virus (HDV) is the fact that its RNAs undergo different forms of posttranscriptional RNA processing. Transcripts of both the genomic RNA and its exact complement, the antigenomic RNA, undergo ribozyme cleavage and RNA ligation. In addition, antigenomic RNA transcripts can undergo 5′ capping, 3′ polyadenylation, and even RNA editing by an adenosine deaminase. This study focused on the processing of antigenomic RNA transcripts. Two approaches were used to study the relationship between the events of polyadenylation, ribozyme cleavage, and RNA ligation. The first represented an examination under more controlled conditions of mutations in the poly(A) signal, AAUAAA, which is essential for this processing. We found that when a separate stable source of δAg-S, the small delta protein, was provided, the replication ability of the mutated RNA was restored. The second approach involved an examination of the processing in transfected cells of specific Pol II DNA-directed transcripts of HDV antigenomic sequences. The DNA constructs used were such that the RNA transcripts were antigenomic and began at the same 5′ site as the mRNA produced during RNA-directed HDV genome replication. A series of such constructs was assembled in order to test the relative abilities of the transcripts to undergo processing by polyadenylation or ribozyme cleavage at sites further 3′ on a multimer of HDV sequences. The findings from the two experimental approaches led to significant modifications in the rolling-circle model of HDV genome replication.
机译:丙型肝炎三角洲病毒(HDV)生命周期的内在原因是其RNA经历了转录后RNA加工的不同形式。基因组RNA及其精确互补序列(反基因组RNA)的转录本都经过核酶切割和RNA连接。此外,反基因组RNA转录本可以进行5'封端,3'聚腺苷酸化,甚至通过腺苷脱氨酶进行RNA编辑。这项研究的重点是反基因组RNA转录物的加工。两种方法用于研究聚腺苷酸化,核酶裂解和RNA连接之间的关系。第一个代表在更受控的poly(A)信号AAUAAA突变的条件下进行的检查,这对于此处理至关重要。我们发现,当提供单独的稳定来源的δAg-S(小δ蛋白)时,突变的RNA的复制能力得以恢复。第二种方法涉及检查转染细胞中HDV反基因组序列的特定Pol II DNA定向转录本的加工。所使用的DNA构建体使得RNA转录物是反基因组学的,并且始于与在RNA指导的HDV基因组复制期间产生的mRNA相同的5'位点。组装了一系列这样的构建体,以测试转录物通过在HDV序列的多聚体上更远的3'位上的聚腺苷酸化或核酶切割而进行加工的相对能力。两种实验方法的发现导致HDV基因组复制的滚圆模型发生了重大变化。

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