Kufel J, Kirsebom L A
Department of Microbiology, Biomedical Center, Uppsala, Sweden.
RNA. 1998 Jul;4(7):777-88. doi: 10.1017/s1355838298970923.
We have studied the structure and divalent metal ion binding of a domain of the ribozyme RNase P RNA that is involved in base pairing with its substrate. Our data suggest that the folding of this internal loop, the P15-loop, is similar irrespective of whether it is part of the full-length ribozyme or part of a model RNA molecule. We also conclude that this element constitutes an autonomous divalent metal ion binding domain of RNase P RNA and our data suggest that certain specific chemical groups within the P15-loop participate in coordination of divalent metal ions. Substitutions of the Sp- and Rp-oxygens with sulfur at a specific position in this loop result in a 2.5-5-fold less active ribozyme, suggesting that Mg2+ binding at this position contributes to function. Our findings strengthen the concept that small RNA building blocks remain basically unchanged when removed from their structural context and thus can be used as models for studies of their potential function and structure within native RNA molecules.
我们研究了核酶RNase P RNA中一个与底物碱基配对相关结构域的结构及二价金属离子结合情况。我们的数据表明,无论该内部环(P15环)是全长核酶的一部分还是模型RNA分子的一部分,其折叠方式都是相似的。我们还得出结论,该元件构成了RNase P RNA的一个自主二价金属离子结合结构域,并且我们的数据表明P15环内的某些特定化学基团参与了二价金属离子的配位。在该环的特定位置用硫取代Sp和Rp氧原子会导致核酶活性降低2.5至5倍,这表明该位置的Mg2+结合对功能有贡献。我们的研究结果强化了这样一个概念,即小RNA构建模块从其结构背景中移除时基本保持不变,因此可作为研究其在天然RNA分子中的潜在功能和结构的模型。