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细菌核糖核酸酶P RNA中P4元件的溶液结构及金属离子结合

Solution structure and metal-ion binding of the P4 element from bacterial RNase P RNA.

作者信息

Schmitz M, Tinoco I

机构信息

Department of Chemistry, University of California, Berkeley 94720-1460, USA.

出版信息

RNA. 2000 Sep;6(9):1212-25. doi: 10.1017/s1355838200000881.

Abstract

We determined the solution structure of two 27-nt RNA hairpins and their complexes with cobalt(III)-hexammine (Co(NH3)3+(6)) by NMR spectroscopy. The RNA hairpins used in this study are the P4 region from Escherichia coli RNase P RNA and a C-to-U mutant that confers altered divalent metal-ion specificity (Ca2+ replaces Mg2+) for catalytic activity of this ribozyme. Co(NH3)3+(6) is a useful spectroscopic probe for Mg(H2O)2+(6)-binding sites because both complexes have octahedral symmetry and have similar radii. The thermodynamics of binding to both RNA hairpins was studied using chemical shift changes upon titration with Mg2+, Ca2+, and Co(NH3)3+(6). We found that the equilibrium binding constants for each of the metal ions was essentially unchanged when the P4 model RNA hairpin was mutated, although the NMR structures show that the RNA hairpins adopt different conformations. In the C-to-U mutant a C.G base pair is replaced by U.G, and the conserved bulged uridine in the P4 wild-type stem shifts in the 3' direction by 1 nt. Intermolecular NOE cross-peaks between Co(NH3)3+(6) and RNA protons were used to locate the site of Co(NH3)3+(6) binding to both RNA hairpins. The metal ion binds in the major groove near a bulge loop, but is shifted 5' by more than 1 bp in the mutant. The change of the metal-ion binding site provides a possible explanation for changes in catalytic activity of the mutant RNase P in the presence of Ca2+.

摘要

我们通过核磁共振光谱法测定了两个27个核苷酸的RNA发夹及其与六氨合钴(III)(Co(NH₃)₆³⁺)复合物的溶液结构。本研究中使用的RNA发夹是来自大肠杆菌核糖核酸酶P RNA的P4区域以及一个C到U的突变体,该突变体赋予了这种核酶改变的二价金属离子特异性(Ca²⁺取代Mg²⁺)以实现催化活性。Co(NH₃)₆³⁺是Mg(H₂O)₆²⁺结合位点的一种有用的光谱探针,因为这两种复合物都具有八面体对称性且半径相似。使用Mg²⁺、Ca²⁺和Co(NH₃)₆³⁺滴定过程中的化学位移变化研究了与两种RNA发夹结合的热力学。我们发现,当P4模型RNA发夹发生突变时,每种金属离子的平衡结合常数基本不变,尽管核磁共振结构表明RNA发夹采用了不同的构象。在C到U突变体中,一个C·G碱基对被U·G取代,并且P4野生型茎中保守的凸起尿苷在3'方向上移动了1个核苷酸。Co(NH₃)₆³⁺与RNA质子之间的分子间核Overhauser效应(NOE)交叉峰用于确定Co(NH₃)₆³⁺与两种RNA发夹结合的位点。金属离子结合在靠近凸起环的大沟中,但在突变体中向5'方向移动了超过1个碱基对。金属离子结合位点的变化为突变型核糖核酸酶P在Ca²⁺存在下催化活性的变化提供了一种可能的解释。

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