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Evidence that binding of C5 protein to P RNA enhances ribozyme catalysis by influencing active site metal ion affinity

机译:C5蛋白与P RNA结合通过影响活性位点金属离子亲和力而增强核酶催化作用的证据

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摘要

The RNA subunit (P RNA) of the bacterial RNase P ribonucleoprotein is a ribozyme that catalyzes the Mg-dependent hydrolysis of pre-tRNA, but it requires an essential protein cofactor (P protein) in vivo that enhances substrate binding affinities and catalytic rates in a substrate dependent manner. Previous studies of Bacillus subtilis RNase P, containing a Type B RNA subunit, showed that its cognate protein subunit increases the affinity of metal ions important for catalysis, but the functional role of these ions is unknown. Here, we demonstrate that the Mg2+ dependence of the catalytic step for Escherichia coli RNase P, which contains a more common Type A RNA subunit, is also modulated by its cognate protein subunit (C5), indicating that this property is fundamental to P protein. To monitor specifically the binding of active site metal ions, we analyzed quantitatively the rescue by Cd2+ of an inhibitory Rp phosphorothioate modification at the pre-tRNA cleavage site. The results show that binding of C5 protein increases the apparent affinity of the rescuing Cd2+, providing evidence that C5 protein enhances metal ion affinity in the active site, and thus is likely to contribute significantly to rate enhancement at physiological metal ion concentrations.
机译:细菌RNase P核糖核蛋白的RNA亚基(P RNA)是一种核酶,可催化Mg依赖的pre-tRNA水解,但在体内需要一种必需的蛋白质辅因子(P蛋白),以增强底物的结合亲和力和催化速率。取决于底物的方式。枯草芽孢杆菌RNase P的先前研究包含B型RNA亚基,它的同源蛋白亚基增加了对催化重要的金属离子的亲和力,但这些离子的功能作用尚不清楚。在这里,我们证明了大肠杆菌RNase P催化步骤的Mg 2 + 依赖性(其包含更常见的A型RNA亚基)也受其同源蛋白亚基(C5)调节,表明该特性是P蛋白的基础。为了专门监测活性位点金属离子的结合,我们定量分析了Cd 2 + 在tRNA前切割位点抑制Rp硫代磷酸酯修饰的挽救作用。结果表明,C5蛋白的结合增加了救援的Cd 2 + 的表观亲和力,提供了证据表明C5蛋白增强了活性位点的金属离子亲和力,因此可能显着促进速率的提高在生理金属离子浓度下。

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