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Existence of efficient divalent metal ion-catalyzed and inefficient divalent metal ion-independent channels in reactions catalyzed by a hammerhead ribozyme

机译:锤头状核酶催化的反应中存在有效的二价金属离子催化和无效的二价金属离子非依赖性通道

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摘要

The hammerhead ribozyme is generally accepted as a well characterized metalloenzyme. However, the precise nature of the interactions of the RNA with metal ions remains to be fully defined. Examination of metal ion-catalyzed hammerhead reactions at limited concentrations of metal ions is useful for evaluation of the role of metal ions, as demonstrated in this study. At concentrations of Mn2+ ions from 0.3 to 3 mM, addition of the ribozyme to the reaction mixture under single-turnover conditions enhances the reaction with the product reaching a fixed maximum level. Further addition of the ribozyme inhibits the reaction, demonstrating that a certain number of divalent metal ions is required for proper folding and also for catalysis. At extremely high concentrations, monovalent ions, such as Na+ ions, can also serve as cofactors in hammerhead ribozyme-catalyzed reactions. However, the catalytic efficiency of monovalent ions is extremely low and, thus, high concentrations are required. Furthermore, addition of monovalent ions to divalent metal ion-catalyzed hammerhead reactions inhibits the divalent metal ion-catalyzed reactions, suggesting that the more desirable divalent metal ion–ribozyme complexes are converted to less desirable monovalent metal ion–ribozyme complexes via removal of divalent metal ions, which serve as a structural support in the ribozyme complex. Even though two channels appear to exist, namely an efficient divalent metal ion-catalyzed channel and an inefficient monovalent metal ion-catalyzed channel, it is clear that, under physiological conditions, hammerhead ribozymes are metalloenzymes that act via the significantly more efficient divalent metal ion-dependent channel. Moreover, the observed kinetic data are consistent with Lilley’s and DeRose’s two-phase folding model that was based on ground state structure analyses.
机译:锤头状核酶通常被公认为特征良好的金属酶。但是,RNA与金属离子相互作用的确切性质尚待充分定义。如本研究所示,在有限的金属离子浓度下检查金属离子催化的锤头反应可用于评估金属离子的作用。在Mn2 +离子浓度为0.3至3 mM的情况下,在单周转条件下向反应混合物中添加核酶可增强反应,使产物达到固定的最大水平。进一步加入核酶会抑制反应,表明适当折叠和催化都需要一定数量的二价金属离子。在极高的浓度下,单价离子(例如Na +离子)也可以作为锤头状核酶催化反应的辅助因子。但是,一价离子的催化效率极低,因此需要高浓度。此外,在二价金属离子催化的锤头反应中添加一价离子会抑制二价金属离子催化的反应,这表明更理想的二价金属离子核酶复合物通过去除二价金属而转化为不太理想的一价金属离子核酶复合物离子,在核酶复合物中起结构支撑作用。尽管似乎存在两个通道,即有效的二价金属离子催化通道和无效的单价金属离子催化通道,但很明显,在生理条件下,锤头状核酶是通过显着更有效的二价金属离子起作用的金属酶。依赖的渠道。此外,观察到的动力学数据与基于基态结构分析的Lilley和DeRose的两相折叠模型一致。

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