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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Adaptability in protein structures: structural dynamics and implications in ligand design
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Adaptability in protein structures: structural dynamics and implications in ligand design

机译:蛋白质结构的适应性:结构动力学及其对配体设计的影响

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摘要

The basic framework of understanding the mechanisms of protein functions is achieved from the knowledge of their structures which can model the molecular recognition. Recent advancement in the structural biology has revealed that in spite of the availability of the structural data, it is nontrivial to predict the mechanism of the molecular recognition which progresses via situation-dependent structural adaptation. The mutual selectivity of protein-protein and protein-ligand interactions often depends on the modulations of conformations empowered by their inherent flexibility, which in turn regulates the function. The mechanism of a protein's function, which used to be explained by the ideas of 'lock and key' has evolved today as the concept of 'induced fit' as well as the 'population shift' models. It is felt that the 'dynamics' is an essential feature to take into account for understanding the mechanism of protein's function. The design principles of therapeutic molecules suffer from the problems of plasticity of the receptors whose binding conformations are accurately not predictable from the prior knowledge of a template structure. On the other hand, flexibility of the receptors provides the opportunity to improve the binding affinity of a ligand by suitable substitution that will maximize the binding by modulating the receptors surface. In this paper, we discuss with example how the protein's flexibility is correlated with its functions in various systems, revealing the importance of its understanding and for making applications. We also highlight the methodological challenges to investigate it computationally and to account for the flexible nature of the molecules in drug design.
机译:理解蛋白质功能机制的基本框架是通过了解其可以为分子识别建模的结构来实现的。结构生物学的最新进展表明,尽管可获得结构数据,但预测通过情况依赖的结构适应而发展的分子识别机制并非易事。蛋白质-蛋白质和蛋白质-配体相互作用的相互选择性通常取决于构象的调节,这些构象是由其固有的柔韧性赋予的,从而调节功能。如今,蛋白质功能的机制已演变为“诱导适合”的概念以及“人口迁移”模型,而蛋白质的功能机制通常由“锁和钥匙”的概念来解释。可以认为,“动力学”是考虑蛋白质功能机制的基本特征。治疗性分子的设计原理具有受体的可塑性问题,这些受体的结合构象根据模板结构的现有知识是准确不可预测的。另一方面,受体的柔韧性提供了通过合适的取代来改善配体的结合亲和力的机会,所述合适的取代将通过调节受体表面而最大化结合。在本文中,我们将举例讨论蛋白质的柔韧性如何与其在各种系统中的功能相关联,从而揭示其理解和应用前景的重要性。我们还强调了方法学上的挑战,以进行计算机研究并考虑药物设计中分子的灵活性。

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