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首页> 外文期刊>RNA >Ground-state coordination of a catalytic metal to the scissile phosphate of a tertiary-stabilized Hammerhead ribozyme.
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Ground-state coordination of a catalytic metal to the scissile phosphate of a tertiary-stabilized Hammerhead ribozyme.

机译:催化金属与三级稳定锤头型核酶的易裂变磷酸盐的基态配位。

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Although the Hammerhead ribozyme (HHRz) has long been used as a model system in the field of ribozyme enzymology, several details of its mechanism are still not well understood. In particular, significant questions remain concerning the disposition and role of catalytic metals in the HHRz. Previous metal-rescue experiments using a "minimal" HHRz resulted in prediction of a catalytic metal that is bound in the A9/G10.1 site in the ground state of the reaction and that bridges to the scissile phosphate further along the reaction pathway. "Native" or extended HHRz constructs contain tertiary contacts that stabilize a more compact structure at moderate ionic strength. We performed Cd(2+) rescue experiments on an extended HHRz from Schistosoma mansoni using stereo-pure scissile phosphorothioate-substituted substrates in order to determine whether a metal ion makes contact with the scissile phosphate in the ground state or further along the reaction coordinate. Inhibition in Ca(2+)/Mg(2+) and rescue by thiophilic Cd(2+) was specific for the R(p)-S stereoisomer of the scissile phosphate. The affinity of the rescuing Cd(2+), measured in two different ionic strength backgrounds, increased fourfold to 17-fold when the pro-R(p) oxygen is replaced by sulfur. These data support a model in which the rescuing metal ion makes a ground-state interaction with the scissile phosphate in the native HHRz. The resulting model for Mg(2+) activation in the HHRz places a metal ion in contact with the scissile phosphate, where it may provide ground-state electrostatic activation of the substrate.
机译:尽管锤头状核酶(HHRz)早已在核酶学领域用作模型系统,但其机理的一些细节仍未得到很好的理解。特别是,关于HHRz中催化金属的布置和作用,仍然存在重大问题。先前使用“最小” HHRz进行的金属拯救实验导致对催化金属的预测,该催化金属在反应的基态下结合在A9 / G10.1位置,并沿着反应路径进一步桥接易裂变的磷酸盐。 “天然”或扩展的HHRz构建体包含三级接触,可在中等离子强度下稳定更紧凑的结构。我们使用立体纯可裂硫代磷酸酯取代的底物对曼氏血吸虫的扩展HHRz进行了Cd(2+)拯救实验,以确定金属离子是否与基态或沿反应坐标的易裂磷酸接触。在Ca(2 +)/ Mg(2+)中的抑制和由亲硫性Cd(2+)进行的救援是对R(p)-S立体磷酸酯的立体异构体特有的。当前R(p)氧被硫取代时,在两种不同离子强度背景下测得的拯救Cd(2+)的亲和力增加了4倍至17倍。这些数据支持一个模型,在该模型中,救援金属离子与天然HHRz中的易裂磷酸盐发生基态相互作用。在HHRz中生成的Mg(2+)活化模型使金属离子与易裂磷酸盐接触,在该处可提供底物的基态静电活化。

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