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首页> 外文期刊>Biochemical Pharmacology >What we have learned from crystal structures of proteins to receptor function.
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What we have learned from crystal structures of proteins to receptor function.

机译:我们从蛋白质的晶体结构到受体的功能学到了什么。

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摘要

The activity of ligand gated channels is crucial for proper brain function and dysfunction of a single receptor subtype have led to neurological impairments ranging from benign to major diseases such as epilepsy, startle diseases, etc. Molecular biology and crystallography allowed the characterization at the atomic scale of the first four transmembrane ligand gated channels and of proteins sharing a high degree of homology with the neurotransmitter-binding domain. Gaining an adequate knowledge of the structural features of the ligand binding pocket led to the possibilities of developing virtual screening based approaches and probing in silico the docking of very large numbers of molecules. Development of new computing tools further extended such possibilities and rendered possible the screening of the chemical universe database GDB-11, which contains all possible organic molecules up to 11 atoms of C, N, O and F. In the case of the nicotinic acetylcholine receptors molecules identified using such screening methods were synthesized and characterized in binding assays and their pose determined in crystal structure with the acetylcholine binding protein. However, in spite of these thorough approaches, functional studies revealed that these molecules had a greater affinity for the pore domain of the channel and acted as open channel blocker rather than binding site antagonist. In this work, we discuss the potential and current limitations of how progresses made with the crystal structures of ligand gated channels, or ligand binding proteins, can be used in combination with virtual screening and functional assays, to identify novel compounds.
机译:配体门控通道的活性对于大脑的正常功能至关重要,单个受体亚型的功能障碍导致神经系统损害,从良性到主要疾病,例如癫痫,惊吓疾病等。分子生物学和晶体学允许在原子级进行表征前四个跨膜配体门控通道中的一部分和与神经递质结合域具有高度同源性的蛋白质。对配体结合口袋的结构特征有足够的了解导致开发基于虚拟筛选的方法并在计算机上探测大量分子对接的可能性。新计算工具的开发进一步扩展了这种可能性,并使筛选化学宇宙数据库GDB-11成为可能,该数据库包含最多11个C,N,O和F原子的所有可能的有机分子。对于烟碱乙酰胆碱受体合成了使用这种筛选方法鉴定的分子,并在结合试验中进行了表征,并用乙酰胆碱结合蛋白在晶体结构中确定了它们的姿势。然而,尽管采取了这些彻底的方法,功能研究仍显示这些分子对通道的孔结构域具有更大的亲和力,并充当开放通道阻滞剂而不是结合位点拮抗剂。在这项工作中,我们讨论了配体门控通道或配体结合蛋白的晶体结构进展如何与虚拟筛选和功能测定结合使用以鉴定新化合物的潜在和当前局限性。

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