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Evolutionary variation in bacterial RNase P RNAs.

机译:细菌RNase P RNA的进化变异。

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Sequences encoding RNase P RNAs from representatives of the last remaining classical phyla of Bacteria have been determined, completing a general phylogenetic survey of RNase P RNA sequence and structure. This broad sampling of RNase P RNAs allows some refinement of the secondary structure, and reveals patterns in the evolutionary variation of sequences and secondary structures. Although the sequences range from 100 to <25% identical to one another, and although only 40 of the nucleotides are invariant, there is considerable conservation of the underlying core of the RNA sequence. RNase P RNAs, like group I intron RNAs but unlike ribosomal RNAs, transfer RNAs or other highly conserved RNAs, are quite variable in secondary structure outside of this conserved structural core. Conservative regions of the RNA evolve by substitution of apparently interchangeable alternative structures, rather than the insertion and deletion of helical elements that occurs in the more variable regions of the RNA. In a remarkable case of convergent molecular evolution, most of the unusual structural elements of type B RNase P RNAs of the low G+C Gram-positive Bacteria have evolved independently in Thermomicrobium roseum , a member of the green non-sulfur Bacteria.
机译:已经确定了来自细菌的最后剩余经典门的代表的编码RNase P RNA的序列,从而完成了RNase P RNA序列和结构的一般系统发育调查。核糖核酸酶P RNA的这种广泛采样允许对二级结构进行一些改进,并揭示序列和二级结构的进化变异模式。尽管序列彼此之间的同一性范围为100%至<25%,并且尽管只有40个核苷酸是不变的,但RNA序列的基础核心却有相当大的保守性。 RNase P RNA与I组内含子RNA相似,但与核糖体RNA不同,转移RNA或其他高度保守的RNA在此保守结构核心之外的二级结构中变化很大。 RNA的保守区是通过取代表面上可互换的替代结构而不是在RNA可变区中发生的螺旋元件的插入和缺失来进化而来的。在聚合分子进化的一个显着情况下,低G + C革兰氏阳性细菌的B型RNase P RNA的大多数异常结构元素是在绿色无硫细菌成员Roserose中独立进化的。

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