Hernández C, Daròs J A, Elena S F, Moya A, Flores R
Unidad de Biología Molecular y Celular de Plantas, Consejo Superior de Investigaciones Científicas, Valencia, Spain.
Nucleic Acids Res. 1992 Dec 11;20(23):6323-9. doi: 10.1093/nar/20.23.6323.
The sequence of a circular RNA from carnation has been determined and found to consist of 275 nucleotide residues adopting a branched secondary structure of minimum free energy. Both plus and minus strands of this RNA can form the hammerhead structures proposed to mediate the in vitro self-cleavage of a number of small infectious plant RNAs and the transcript of satellite 2 DNA from the newt. Minus full- and partial-length transcripts of the carnation circular RNA including the hammerhead structure showed self-cleavage during transcription and after purification, indicating the involvement of a single-hammerhead structure in the self-cleavage reaction. In the case of the plus transcripts only a dimeric RNA, but not a monomeric one, self-cleaved efficiently during transcription and after purification, strongly supporting the implication in this process of a double-hammerhead structure theoretically more stable than the corresponding single cleavage domain. However, a plus monomeric transcript self-cleaved after purification at a slow rate in a concentration-independent reaction which most probably occurs through an intramolecular mechanism. Comparative sequence analysis has revealed that the circular RNA from carnation shares similarities with some representative members of the viroid and viroid-like satellites RNAs from plants, suggesting that it is a new member of either these two groups of small pathogenic RNAs.
已确定一种来自康乃馨的环状RNA的序列,发现其由275个核苷酸残基组成,呈具有最小自由能的分支二级结构。该RNA的正链和负链均可形成锤头状结构,据推测,该结构介导了一些感染性小植物RNA以及蝾螈卫星2 DNA转录本的体外自我切割。包含锤头状结构的康乃馨环状RNA的负链全长和部分长度转录本在转录过程中以及纯化后均表现出自我切割,这表明单锤头状结构参与了自我切割反应。就正链转录本而言,只有二聚体RNA在转录过程中以及纯化后能有效自我切割,而单体RNA则不能,这有力地支持了理论上比相应单切割结构域更稳定的双锤头状结构参与这一过程的观点。然而,正链单体转录本在纯化转录本在浓度无关反应中以较慢速率自我切割,这很可能是通过分子内机制发生的。比较序列分析表明,来自康乃馨的环状RNA与植物类病毒和类病毒样卫星RNA的一些代表性成员具有相似性,这表明它是这两类小致病RNA中的新成员。