Haas E S, Morse D P, Brown J W, Schmidt F J, Pace N R
Department of Biology, Indiana University, Bloomington 47405.
Science. 1991 Nov 8;254(5033):853-6. doi: 10.1126/science.1719634.
Phylogenetic-comparative and mutational analyses were used to elucidate the structure of the catalytically active RNA component of eubacterial ribonuclease P (RNase P). In addition to the refinement and extension of known structural elements, the analyses revealed a long-range interaction that results in a second pseudoknot in the RNA. This feature strongly constrains the three-dimensional structure of RNase P RNA near the active site. Some RNase P RNAs lack this structure but contain a unique, possibly compensating, structural domain. This suggests that different RNA structures located at different positions in the sequence may have equivalent architectural functions in RNase P RNA.
系统发育比较分析和突变分析被用于阐明真细菌核糖核酸酶P(RNase P)催化活性RNA组分的结构。除了对已知结构元件的细化和扩展外,这些分析还揭示了一种远程相互作用,该相互作用导致RNA中形成第二个假结。这一特征强烈限制了活性位点附近RNase P RNA的三维结构。一些RNase P RNA缺乏这种结构,但含有一个独特的、可能具有补偿作用的结构域。这表明位于序列中不同位置的不同RNA结构在RNase P RNA中可能具有等效的结构功能。