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Analysis on a cooperative pathway involving multiple cations in hammerhead reactions

机译:锤头反应中涉及多个阳离子的协同途径分析

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The hammerhead ribozyme reaction is more complex than might have been expected, perhaps because of the flexibility of RNA, which would have enhanced the potential of RNA during evolution of and in the RNA world. Divalent Mg2+ ions can increase the rate of the ribozyme-catalyzed reaction by approximately 10(9)-fold as compared to the background rate under standard conditions. However, the role of Mg2+ ions is controversial since the reaction can proceed in the presence of high concentrations of monovalent ions, such as Li+, Na+, and NH4+ ions, in the absence of divalent ions. We thus carried out ribozyme reactions under various conditions, and we obtained parameters that explain the experimental data. On the basis of the analysis, we propose a new pathway in the hammerhead ribozyme reaction in which divalent metal ions and monovalent ions act cooperatively.
机译:锤头状核酶反应比预期的要复杂得多,这可能是由于RNA的灵活性所致,这将增强RNA在RNA进化过程中以及在RNA世界中的潜力。与标准条件下的背景速率相比,二价Mg2 +离子可将核酶催化的反应速率提高约10(9)倍。但是,Mg2 +离子的作用是有争议的,因为该反应可以在高浓度的一价离子(例如Li +,Na +和NH4 +离子)存在下进行,而在没有二价离子的情况下进行。因此,我们在各种条件下进行了核酶反应,并获得了可解释实验数据的参数。在分析的基础上,我们提出了锤头核酶反应的一个新途径,其中二价金属离子和一价离子协同作用。

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