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Slow formation of a pseudoknot structure is rate limiting in the productive co-transcriptional folding of the self-splicing Candida intron.

机译:伪结结构的缓慢形成限制了自剪接假丝酵母内含子在生产性共转录折叠中的速率限制。

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摘要

Pseudoknots play critical roles in packing the active structure of various functional RNAs. The importance of the P3-P7 pseudoknot in refolding of group I intron ribozymes has been recently appreciated, while little is known about the pseudoknot function in co-transcriptional folding. Here we used the Candida group I intron as a model to address the question. We show that co-transcriptional folding of the active self-splicing intron is twice as fast as refolding. The P3-P7 pseudoknot folds slowly during co-transcriptional folding at a rate constant similar to the folding of the active ribozyme, and folding of both P3-P7 and P1-P10 pseudoknots are inhibited by antisense oligonucleotides. We conclude that when RNA folding is coupled with transcription, formation of pseudoknot structures dominates the productive folding pathway and serves as a rate-limiting step in producing the self-splicing competent Candida intron.
机译:假结在包装各种功能性RNA的活性结构中起关键作用。最近已经认识到P3-P7假结在第I类内含子核酶重折叠中的重要性,而对共转录折叠中的假结功能了解甚少。在这里,我们使用念珠菌I组内含子作为模型来解决这个问题。我们显示,主动自我剪接内含子的共转录折叠速度是重新折叠速度的两倍。 P3-P7假结在共转录折叠过程中以与活性核酶折叠相似的速率常数缓慢折叠,而P3-P7和P1-P10假结的折叠均被反义寡核苷酸抑制。我们得出的结论是,当RNA折叠与转录结合时,假结结构的形成支配了生产性折叠途径,并在生产自剪裁的念珠菌内含子中充当了限速步骤。

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