Branch A D, Benenfeld B J, Baroudy B M, Wells F V, Gerin J L, Robertson H D
Laboratory of Genetics, Rockefeller University, New York, NY 10021.
Science. 1989 Feb 3;243(4891):649-52. doi: 10.1126/science.2492676.
The RNA genome of the hepatitis delta virus (HDV) appears to be made up of two parts: a small domain with a high degree of sequence conservation and structural features likely to promote replication; plus a second, larger domain that is less conserved and encodes the delta antigen. This report focuses on one of the several sets of data that have led to the proposal of this model: the existence of a novel structural element in HDV genomic RNA. This structural element lies within the highly conserved domain of HDV RNA and may be related to the local tertiary structure previously mapped to the central conserved region of the plant viroid genome. Both elements occur in regions with no apparent coding capacity and are distinctively responsive to ultraviolet (UV) light. Transcripts containing partial and full-length genomic sequences of HDV readily undergo a UV-induced crosslinking reaction, which establishes a covalent bond between two noncontiguous segments. By locking two segments of the overall structure into place, this crosslink has permitted the unbranched, rodlike model of HDV RNA to be examined and confirmed in the portion of the RNA analyzed. The clustering of the novel tertiary structure and the recently discovered self-cleavage sites into a highly conserved, but apparently noncoding, portion of the genome defines a viroid-like domain in HDV RNA and raises questions about the possible events leading up to the association of free-living RNAs with messenger RNAs and other RNA molecules.
丁型肝炎病毒(HDV)的RNA基因组似乎由两部分组成:一个具有高度序列保守性和可能促进复制的结构特征的小结构域;以及第二个较大的结构域,其保守性较低,编码丁型抗原。本报告聚焦于导致该模型提出的几组数据之一:HDV基因组RNA中一种新型结构元件的存在。这种结构元件位于HDV RNA的高度保守结构域内,可能与先前定位到植物类病毒基因组中央保守区域的局部三级结构有关。这两种元件都出现在没有明显编码能力的区域,并且对紫外线(UV)有独特的反应。含有HDV部分和全长基因组序列的转录本很容易发生紫外线诱导的交联反应,该反应在两个不相邻的片段之间建立共价键。通过将整体结构的两个片段固定到位,这种交联使得HDV RNA的无分支棒状模型在分析的RNA部分中得以检验和确认。新型三级结构和最近发现的自我切割位点聚集在基因组高度保守但显然无编码功能的部分,这在HDV RNA中定义了一个类病毒样结构域,并引发了关于导致自由生活RNA与信使RNA和其他RNA分子关联的可能事件的问题。