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首页> 外文期刊>PLoS Computational Biology >High Affinity vs. Native Fibronectin in the Modulation of αvβ3 Integrin Conformational Dynamics: Insights from Computational Analyses and Implications for Molecular Design
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High Affinity vs. Native Fibronectin in the Modulation of αvβ3 Integrin Conformational Dynamics: Insights from Computational Analyses and Implications for Molecular Design

机译:高亲和力与天然纤连蛋白在αvβ3整合素构象动力学调控中的作用:计算分析和分子设计的启示。

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摘要

Understanding how binding events modulate functional motions of multidomain proteins is a major issue in chemical biology. We address several aspects of this problem by analyzing the differential dynamics of αvβ3 integrin bound to wild type (wtFN10, agonist) or high affinity (hFN10, antagonist) mutants of fibronectin. We compare the dynamics of complexes from large-scale domain motions to inter-residue coordinated fluctuations to characterize the distinctive traits of conformational evolution and shed light on the determinants of differential αvβ3 activation induced by different FN sequences. We propose an allosteric model for ligand-based integrin modulation: the conserved integrin binding pocket anchors the ligand, while different residues on the two FN10’s act as the drivers that reorganize relevant interaction networks, guiding the shift towards inactive (hFN10-bound) or active states (wtFN10-bound). We discuss the implications of results for the design of integrin inhibitors.
机译:理解结合事件如何调节多域蛋白的功能运动是化学生物学中的一个主要问题。我们通过分析与纤连蛋白的野生型(wtFN10,激动剂)或高亲和力(hFN10,拮抗剂)突变体结合的αvβ3整联蛋白的差异动力学,解决了这个问题的几个方面。我们比较了从大范围域运动到残基间协调波动的复合物动力学,以表征构象进化的独特特征,并阐明了由不同FN序列诱导的差异性αvβ3活化的决定因素。我们提出了基于配体的整联蛋白调节的变构模型:保守的整联蛋白结合口袋锚定了配体,而两个FN10上的不同残基充当了重组相关相互作用网络的驱动器,指导了向非活性(hFN10结合)或活性的转变状态(wtFN10绑定)。我们讨论了结果对整合素抑制剂设计的影响。

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