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Concentration-Dependent Binding of Small Ligands to Multiple Saturable Sites in Membrane Proteins

机译:小配体对膜蛋白中多个饱和位点的浓度依赖性结合。

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摘要

Membrane proteins are primary targets for most therapeutic indications in cancer and neurological diseases, binding over 50% of all known small molecule drugs. Understanding how such ligands impact membrane proteins requires knowledge on the molecular structure of ligand binding, a reasoning that has driven relentless efforts in drug discovery and translational research. Binding of small ligands appears however highly complex involving interaction to multiple transmembrane protein sites featuring single or multiple occupancy states. Within this scenario, looking for new developments in the field, we investigate the concentration-dependent binding of ligands to multiple saturable sites in membrane proteins. The study relying on docking and free-energy perturbation provides us with an extensive description of the probability density of protein-ligand states that allows for computation of thermodynamic properties of interest. It also provides one- and three-dimensional spatial descriptions for the ligand density across the protein-membrane system which can be of interest for structural purposes. Illustration and discussion of the results are shown for binding of the general anesthetic sevoflurane against Kv1.2, a mammalian ion channel for which experimental data are available.
机译:膜蛋白是癌症和神经系统疾病中大多数治疗指征的主要靶标,结合了所有已知小分子药物中的50%以上。了解此类配体如何影响膜蛋白需要了解配体结合的分子结构,这是推动药物发现和转化研究的不懈努力的原因。然而,小配体的结合显得高度复杂,涉及与具有单个或多个占用状态的多个跨膜蛋白位点的相互作用。在这种情况下,为寻找该领域的新进展,我们研究了配体对膜蛋白中多个饱和位点的浓度依赖性结合。依靠对接和自由能扰动进行的研究为我们提供了蛋白质-配体状态的概率密度的广泛描述,该密度允许计算感兴趣的热力学性质。它还提供了跨蛋白质-膜系统的配体密度的一维和三维空间描述,这对于结构目的可能是有意义的。显示了结果的说明和讨论,显示了将全身麻醉的七氟醚与Kv1.2结合的情况,Kv1.2是可利用的实验数据的哺乳动物离子通道。

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