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Modulation of individual steps in group I intron catalysis by a peripheral metal ion

机译:外围金属离子对I组内含子催化中各个步骤的调节

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Enzymes are complex macromolecules that catalyze chemical reactions at their active sites. Important information about catalytic interactions is commonly gathered by perturbation or mutation of active site residues that directly contact substrates. However, active sites are engaged in intricate networks of interactions within the overall structure of the macromolecule, and there is a growing body of evidence about the importance of peripheral interactions in the precise structural organization of the active site. Here, we use functional studies, in conjunction with published structural information, to determine the effect of perturbation of a peripheral metal ion binding site on catalysis in a well-characterized catalytic RNA, the Tetrahymena thermophila group I ribozyme. We perturbed the metal ion binding site by site-specifically introducing a phosphorothioate substitution in the ribozyme's backbone, replacing the native ligands (the pro-R-P oxygen atoms at positions 307 and 308) with sulfur atoms. Our data reveal that these perturbations affect several reaction steps, including the chemical step, despite the absence of direct contacts of this metal ion with the atoms involved in the chemical transformation. As structural probing with hydroxyl radicals did not reveal significant change in the three-dimensional structure upon phosphorothioate substitution, the effects are likely transmitted through local, rather subtle conformational rearrangements. Addition of Cd2+, a thiophilic metal ion, rescues some reaction steps but has deleterious effects on other steps. These results suggest that native interactions in the active site may have been aligned by the naturally occurring peripheral residues and interactions to optimize the overall catalytic cycle.
机译:酶是复杂的大分子,可在其活性位点催化化学反应。有关催化相互作用的重要信息通常通过直接接触底物的活性位点残基的扰动或突变来收集。然而,活性位点参与了大分子整体结构中复杂的相互作用网络,并且越来越多的证据表明,外围相互​​作用在活性位点的精确结构组织中的重要性。在这里,我们使用功能研究结合已发布的结构信息来确定外围金属离子结合位点的扰动对特征明确的催化RNA(嗜热四膜虫)I型核酶的催化作用的影响。我们通过在核酶的骨架中位点特异性引入硫代磷酸酯取代位取代了天然的配体(307和308位的pro-R-P氧原子),从而干扰了金属离子的结合位点。我们的数据表明,这些扰动影响了包括化学步骤在内的多个反应步骤,尽管该金属离子与化学转化所涉及的原子没有直接接触。由于用羟基自由基进行的结构探测未显示出硫代磷酸酯取代后三维结构的显着变化,因此这些影响很可能是通过局部的,相当微妙的构象重排传递的。 Cd2 +(一种亲硫金属离子)的添加可以挽救某些反应步骤,但会对其他步骤产生不利影响。这些结果表明,活性位点中的天然相互作用可能已经被天然存在的外围残基和相互作用所对齐,从而优化了整个催化循环。

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