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Metal Ion-Mediated Folding and Catalysis of the Hammerhead Ribozyme

机译:金属离子介导的锤头状核酶的折叠和催化

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摘要

The factors that determine RNA structure formation, stability, and dynamics are inexorably linked to RNA function. The Hammerhead ribozyme (HHRz) has long served as a model for studying metal-dependent folding and catalysis in RNA. The HHRz consists of three helices meeting at a common junction of conserved nucleotides that form the active site of the ribozyme. Current models of metal-dependent HHRz function involve a requirement for divalent metals to globally fold the ribozyme at low metal concentrations, followed by a second metal-dependent process which activates the HHRz for catalysis. The exact role of metal ions in activating HHRz catalysis is still a subject of investigation. We used 2-aminopurine substitutions near the active site of the ribozyme to determine if this second metal-dependent process involves a conformational rearrangement in the core of the ribozyme. We find evidence for a conformational change beyond global folding in the core of the ribozyme that not only correlates with metal activated catalysis but is also sensitive to the identity of the metal ions used for folding. Though phosphorothioate substitutions indicate that a ground-state coordination of a catalytic metal to the scissile phosphate is required for efficient catalysis, our folding studies show that this coordination event is not absolutely required for folding of the HHRz core. To investigate possible roles for metal ions in general acid-base catalysis, we tested the pH dependence of the HHRz rate using a variety of metal ions. We find the pH dependent rate profile of the ribozyme is shifted by transition metal ions, whereas other group II metals show similar profiles to Mg
机译:决定RNA结构形成,稳定性和动力学的因素与RNA功能密切相关。锤头状核酶(HHRz)长期以来一直是研究RNA中金属依赖性折叠和催化的模型。 HHRz由三个螺旋组成,它们在形成核酶活性位点的保守核苷酸的共同接头处相遇。当前的金属依赖性HHRz功能模型涉及到要求二价金属在低金属浓度下使核酶整体折叠,然后是第二种金属依赖性过程,其激活HHRz进行催化。金属离子在激活HHRz催化中的确切作用仍是研究的主题。我们在核酶的活性位点附近使用了2-氨基嘌呤取代,以确定第二种金属依赖性过程是否涉及核酶核心的构象重排。我们发现,在核酶核心中,构象变化超出了整体折叠,不仅与金属活化催化有关,而且对用于折叠的金属离子的身份也很敏感。尽管硫代磷酸酯取代表明催化金属与可裂解磷酸盐的基态配位对于有效催化是必需的,但我们的折叠研究表明,HHRz芯的折叠并非绝对需要这种配位事件。为了研究金属离子在一般酸碱催化中的可能作用,我们使用多种金属离子测试了HHRz速率的pH依赖性。我们发现核酶的pH依赖性速率曲线被过渡金属离子移动,而其他II类金属显示出与Mg相似的曲线

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    Ward William;

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  • 年度 2012
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