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首页> 外文期刊>Biochemistry >A Kinetic Signature for Parallel Pathways: Conformational Selection and Induced Fit. Links and Disconnects between Observed Relaxation Rates and Fractional Equilibrium Flux under Pseudo-First-Order Conditions
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A Kinetic Signature for Parallel Pathways: Conformational Selection and Induced Fit. Links and Disconnects between Observed Relaxation Rates and Fractional Equilibrium Flux under Pseudo-First-Order Conditions

机译:平行通路的动力学特征:构象选择和诱导拟合。伪一阶条件下观测到的弛豫率与分数平衡通量之间的链接和断开

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摘要

Molecular association plays a ubiquitous role in biochemistry and is often accompanied by conformational exchange in one or both binding partners. Traditionally, two limiting mechanisms are considered for the association of two molecules. In a conformational selection (CS) mechanism, a ligand preferentially binds to a subset of conformations in its binding partner. In contrast, an induced fit (IF) mechanism describes the ligand-dependent isomerization of the binding partner in which binding occurs prior to conformational exchange. Measurements of the ligand concentration dependence of observed rates of relaxation are commonly used to probe whether CS or IF is taking place. Here we consider a four-state thermodynamic cycle subject to detailed balance and demonstrate the existence of a relatively unexplored class of kinetic signatures where an initial decrease in the observed rate is followed by a subsequent increase under pseudo-first-order conditions. We elucidate regions of rate space necessary to generate a nonmonotonic observed rate and show that, under certain conditions, the position of the minimum of the observed rate correlates with a transition in equilibrium flux between CS and IF pathways. Furthermore, we demonstrate that monotonic trends in the observed rate can occur when both CS and IF mechanisms are taking place, suggesting that caution must be taken not to overinterpret monotonic trends as evidence of the absence of either CS or IF. Lastly, we conclude that a nonmonotonic kinetic signature is uniquely unambiguous in the sense that when this trend is observed, one may conclude that both CS and IF mechanistic paths are utilized.
机译:分子缔合在生物化学中起着普遍的作用,并且经常伴随着一个或两个结合配偶体中的构象交换。传统上,两个分子的缔合考虑两种限制机制。在构象选择(CS)机制中,配体优先结合其结合伴侣中的构象子集。相反,诱导拟合(IF)机制描述了结合伴侣的配体依赖性异构化,其中结合发生在构象交换之前。配体浓度对所观察到的弛豫速率的依赖性的测量通常用于探测CS或IF是否发生。在这里,我们考虑一个经过详细平衡的四态热力学循环,并证明存在相对未探索的动力学特征类,其中在观察到的速率上最初的降低之后是在伪一阶条件下的随后的增加。我们阐明了生成非单调观测速率所必需的速率空间区域,并表明在某些条件下,观测速率最小值的位置与CS和IF路径之间的平衡通量转换有关。此外,我们证明,当CS和IF机制同时发生时,观察到的速率可能会出现单调趋势,这表明必须注意不要将单调趋势过度解释为不存在CS或IF的证据。最后,我们得出的结论是,从观察到这种趋势的意义上来说,一个非单调的动力学特征是唯一明确的,可以得出结论:CS和IF机理路径都得到了利用。

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