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Effects of magnesium and related divalent metal ions in topoisomerase structure and function

机译:镁及相关二价金属离子对拓扑异构酶结构与功能的影响

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摘要

The catalytic steps through which DNA topoisomerases produce their biological effects and the interference of drug molecules with the enzyme–DNA cleavage complex have been thoroughly investigated both from the biophysical and the biochemical point of view. This provides the basic structural insight on how this family of essential enzymes works in living systems and how their functions can be impaired by natural and synthetic compounds. Besides other factors, the physiological environment is known to affect substantially the biological properties of topoisomerases, a key role being played by metal ion cofactors, especially divalent ions (Mg2+), that are crucial to bestow and modulate catalytic activity by exploiting distinctive chemical features such as ionic size, hardness and characteristics of the coordination sphere including coordination number and geometry. Indeed, metal ions mediate fundamental aspects of the topoisomerase-driven transphosphorylation process by affecting the kinetics of the forward and the reverse steps and by modifying the enzyme conformation and flexibility. Of particular interest in type IA and type II enzymes are ionic interactions involving the Toprim fold, a protein domain conserved through evolution that contains a number of acidic residues essential for catalysis. A general two-metal ion mechanism is widely accepted to account for the biophysical and biochemical data thus far available.
机译:从生物物理和生化的角度,已经彻底研究了DNA拓扑异构酶产生生物效应的催化步骤以及药物分子对酶-DNA裂解复合物的干扰。这提供了有关该基本酶家族在生命系统中如何工作以及天然和合成化合物如何损害其功能的基本结构见解。除其他因素外,已知生理环境会实质上影响拓扑异构酶的生物学特性,金属离子辅因子尤其是二价离子(Mg 2 + )发挥着关键作用,这对于赋与通过利用独特的化学特征(例如离子尺寸,硬度和配位球的特征,包括配位数和几何形状)来调节催化活性。实际上,金属离子通过影响正向和反向步骤的动力学以及修饰酶的构象和柔韧性来介导拓扑异构酶驱动的转磷酸化过程的基本方面。 IA型和II型酶特别感兴趣的是涉及Toprim折叠的离子相互作用,Toprim折叠是一种通过进化保守的蛋白质域,其中包含许多催化必不可少的酸性残基。一般的双金属离子机理已被广泛接受以解释迄今为止可获得的生物物理和生化数据。

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