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Y In silico Exploration of the Conformational Universe of GPCRs

机译:Y对GPCR构象宇宙的计算机探索

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The structural plasticity of G protein coupled receptors (GPCRs) leads to a conformational universe going from inactive to active receptor states with several intermediate states. Many of them have not been captured yet and their role for GPCR activation is not well understood. The study of this conformational space and the transition dynamics between different receptor populations is a major challenge in molecular biophysics. The rational design of effector molecules that target such receptor populations allows fine-tuning receptor signalling with higher specificity to produce drugs with safer therapeutic profiles. In this minireview, we outline highly conserved receptor regions which are considered determinant for the establishment of distinct receptor states. We then discuss in-silico approaches such as dimensionality reduction methods and Markov State Models to explore the GPCR conformational universe and exploit the obtained conformations through structure-based drug design.
机译:G蛋白偶联受体(GPCR)的结构可塑性导致构象宇宙从非活动状态变为具有多个中间状态的活动状态。它们中的许多还没有被捕获,它们在GPCR激活中的作用还没有被很好地理解。对这种构象空间和不同受体种群之间的过渡动​​力学的研究是分子生物物理学中的主要挑战。靶向此类受体群体的效应子分子的合理设计允许以更高的特异性微调受体信号,从而产生具有更安全治疗谱的药物。在这份小型回顾中,我们概述了高度保守的受体区域,这些区域被认为是建立不同受体状态的决定因素。然后,我们讨论诸如降维方法和马尔可夫状态模型之类的计算机内方法,以探索GPCR构象宇宙,并通过基于结构的药物设计来利用获得的构象。

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