Beaudry D, Busière F, Lareau F, Lessard C, Perreault J P
Département de Biochimie, Université de Sherbrooke, Québec, Canada.
Nucleic Acids Res. 1995 Mar 11;23(5):745-52. doi: 10.1093/nar/23.5.745.
Hammerhead self-cleavage of dimeric, monomeric, truncated and mutated transcripts derived from both polarities of the peach latent mosaic viroid (PLMVd) were characterized. In contrast to some results previously published for a very close sequence variant (see ref. 1), these RNAs exhibit a virtually identical self-cleavage during transcription and after purification. By self-cleavage of dimeric transcripts with normal and mutated hammerhead domains and by complementation experiments, we show that the cleavage reactions involve only single hammerhead structures. This observation contrasts with the case of avocado sunblotch viroid (ASBVd), the other self-cleaving viroid, whose mechanism involves mostly double hammerhead structures, whereas single hammerhead cleavage is associated with viroid-like plant satellite RNAs. The difference in stability between the native secondary structures adopted by viroids and the autocatalytic structures, including the hammerhead motif, governs the efficiency of the self-cleavage reaction. The transition between these conformers is the limiting step in catalysis and is related exclusively to the left arm region of PLMVd secondary structure, which includes the hammerhead sequences. Most of the mutations between the variant we used and the sequence variant previously published are located in this left arm region, which may explain to a great extent the differences in their cleavage efficiency. No interactions with long-range sequences contributing to the autocatalytic tertiary structure were revealed in these experiments.
对源自桃潜隐花叶类病毒(PLMVd)正负链的二聚体、单体、截短和突变转录本的锤头状自我切割进行了表征。与之前针对一个非常相近的序列变体发表的一些结果(见参考文献1)不同,这些RNA在转录过程中和纯化后表现出几乎相同的自我切割。通过对具有正常和突变锤头结构域的二聚体转录本进行自我切割以及互补实验,我们表明切割反应仅涉及单个锤头结构。这一观察结果与另一种自我切割类病毒鳄梨日斑类病毒(ASBVd)的情况形成对比,ASBVd的机制主要涉及双锤头结构,而单锤头切割与类病毒样植物卫星RNA相关。类病毒采用的天然二级结构与包括锤头基序在内的自催化结构之间的稳定性差异决定了自我切割反应的效率。这些构象之间的转变是催化的限速步骤,并且仅与PLMVd二级结构的左臂区域相关,该区域包括锤头序列。我们使用的变体与之前发表的序列变体之间的大多数突变都位于该左臂区域,这在很大程度上可能解释了它们切割效率的差异。在这些实验中未发现与有助于自催化三级结构的长程序列有相互作用。