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Theory and simulation of diffusion-influenced stochastically gated ligand binding to buried sites

机译:扩散影响的随机门控配体与掩埋位点结合的理论和模拟

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摘要

We consider the diffusion-influenced rate coefficient of ligand binding to a site located in a deep pocket on a protein; the binding pocket is flexible and can reorganize in response to ligand entrance. We extend to this flexible protein-ligand system a formalism developed previously for breaking the ligand-binding problem into an exterior problem and an interior problem. Conformational fluctuations of a bottleneck or a lid and the binding site are modeled as stochastic gating. We present analytical and Brownian dynamics simulation results for the case of a cylindrical pocket containing a binding site at the bottom. Induced switch, whereby the conformation of the protein adapts to the incoming ligand, leads to considerable rate enhancement.
机译:我们考虑配体结合到位于蛋白质深口袋中的位点的扩散影响速率系数;结合袋是柔性的,并且可以响应于配体的进入而重组。我们将此灵活的蛋白质-配体系统扩展为先前开发的形式主义,用于将配体结合问题分解为外部问题和内部问题。瓶颈或盖子和结合位点的构象波动被建模为随机门控。我们提供了一个在底部包含一个结合位点的圆柱形袋的情况的分析和布朗动力学模拟结果。蛋白质的构象适应引入的配体的诱导转换导致速率显着提高。

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