Guerrier-Takada C, Lumelsky N, Altman S
Department of Biology, Yale University, New Haven, CT 06520.
Science. 1989 Dec 22;246(4937):1578-84. doi: 10.1126/science.2480641.
Analysis of crosslinked complexes of M1 RNA, the catalytic RNA subunit of ribonuclease P from Escherichia coli, and transfer RNA precursor substrates has led to the identification of regions in the enzyme and in the substrate that are in close physical proximity to each other. The nucleotide in M1 RNA, residue C92, which participates in a crosslink with the substrate was deleted and the resulting mutant M1 RNA was shown to cleave substrates lacking the 3' terminal CCAUCA sequence at sites several nucleotides away from the normal site of cleavage. The presence or absence of the 3' terminal CCAUCA sequence in transfer RNA precursor substrates markedly affects the way in which these substrates interact with the catalytic RNA in the enzyme-substrate complex. The contacts between wild-type M1 RNA and its substrate are in a region that resembles part of the transfer RNA "E" (exit) site in 23S ribosomal RNA. These data demonstrate that in RNA's with very different cellular functions, there are domains with similar structural and functional properties and that there is a nucleotide in M1 RNA that affects the site of cleavage by the enzyme.
对大肠杆菌核糖核酸酶P的催化RNA亚基M1 RNA与转运RNA前体底物的交联复合物进行分析,已确定了酶和底物中彼此物理距离很近的区域。参与与底物交联的M1 RNA中的核苷酸C92被删除,结果显示所得的突变型M1 RNA能在距正常切割位点几个核苷酸的位置切割缺乏3'末端CCAUCA序列的底物。转运RNA前体底物中3'末端CCAUCA序列的存在与否显著影响这些底物在酶-底物复合物中与催化RNA相互作用的方式。野生型M1 RNA与其底物之间的接触区域类似于23S核糖体RNA中转运RNA“E”(出口)位点的一部分。这些数据表明,在具有非常不同细胞功能的RNA中,存在具有相似结构和功能特性的结构域,并且M1 RNA中有一个核苷酸会影响酶的切割位点。