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Identification of splicing signals in introns of yeast mitochnodrial split genes: mutational alterations in intron bI 1 and secondary structures in related introns

机译:酵母线粒体分裂基因内含子中剪接信号的鉴定:内含子bI 1的突变和相关内含子的二级结构

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Four mitochondrial mutations are known to block excision of intron Il of the cob gene in S. cerevisiae. The nucleotide sequence alteration of one of them, M4873, has been determined. It is a deletion of 1 bp in a run of five G's at a distance of 30 to 34 bp upstream to the 3′ splice point. Reversion is found to occur by restoration of the run of five G's either by insertion of 1 G (wild type reversion) or by transition A→G next to this run of G's (pseudo–wild type reversion). The effect of mutation and reversion on RNA splicing indicates that the run of five G's is of critical importance for intron Il excision, possibly in participating in the formation of a splice signal with a helical structure. This presumption is confirmed by the observation that this sequence is part of a larger sequence of some 80 bp next to the 3′ splice point which is conserved to some extend in the four mitochondrial introns (bI1, aI2, aI2, aI5) that survive after excision as circular RNAs. Most striking is the conservation of this sequence at the level of secondary structure.
机译:已知四个线粒体突变会阻止酿酒酵母中cob基因内含子II的切除。已经确定了其中之一,M4873的核苷酸序列改变。它是在3'剪接点上游30到34 bp的距离内的五个G序列中缺失1 bp。发现恢复是通过恢复5个G的行程来实现的,方法是插入1 G(野生型恢复),或者通过在该G的行程旁边进行过渡A→G(伪-野生型恢复)。突变和回复对RNA剪接的影响表明,五个G的运行对于内含子II切除至关重要,可能参与了具有螺旋结构的剪接信号的形成。通过观察证实了这一推测,该序列是一个较大的序列的一部分,该序列位于3'剪接点旁约80 bp的较大序列中,在4个线粒体内含子(bI1,aI2,aI2,aI5)中保守延伸,这些内含子在切除为环状RNA。最引人注目的是该序列在二级结构水平上的保守性。

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