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Conformational selection or induced fit? 50 years of debate resolved

机译:构象选择或诱导拟合? 50年的辩论得以解决

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摘要

Exactly 50 years ago, biochemists raised the question of the mechanism of the conformational change that mediates “allosteric” interactions between regulatory sites and biologically active sites in regulatory/receptor proteins. Do the different conformations involved already exist spontaneously in the absence of the regulatory ligands (Monod-Wyman-Changeux), such that the complementary protein conformation would be selected to mediate signal transduction, or do particular ligands induce the receptor to adopt the conformation best suited to them (Koshland-Nemethy-Filmer—induced fit)? This is not just a central question for biophysics, it also has enormous importance for drug design. Recent advances in techniques have allowed detailed experimental and theoretical comparisons with the formal models of both scenarios. Also, it has been shown that mutated receptors can adopt constitutively active confirmations in the absence of ligand. There have also been demonstrations that the atomic resolution structures of the same protein are essentially the same whether ligand is bound or not. These and other advances in past decades have produced a situation where the vast majority of the data using different categories of regulatory proteins (including regulatory enzymes, ligand-gated ion channels, G protein-coupled receptors, and nuclear receptors) support the conformational selection scheme of signal transduction.
机译:恰好在50年前,生物化学家提出了构象变化机制的问题,该构象变化介导调节/受体蛋白中调节位点和生物活性位点之间的“变构”相互作用。在没有调节配体(Monod-Wyman-Changeux)的情况下,涉及的不同构象是否已经自发存在,从而选择互补蛋白构象来介导信号转导,还是特定的配体诱导受体采用最适合的构象?对他们(Koshland-Nemethy-Filmer引起的不适)?这不仅是生物物理学的中心问题,对于药物设计也具有极其重要的意义。技术的最新进展已允许对这两种方案的正式模型进行详细的实验和理论比较。而且,已经表明,在不存在配体的情况下,突变的受体可以采用组成性活性确认。还已经证明,无论配体是否结合,相同蛋白质的原子拆分结构基本上是相同的。过去几十年来的这些以及其他进展产生了一种情况,其中使用不同类别的调节蛋白(包括调节酶,配体门控离子通道,G蛋白偶联受体和核受体)的绝大多数数据都支持构象选择方案。信号转导。

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