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Modelling three-dimensional protein structures for applications in drug design

机译:模拟三维蛋白质结构在药物设计中的应用

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摘要

A structural perspective of drug target and anti-target proteins, and their molecular interactions with biologically active molecules, largely advances many areas of drug discovery, including target validation, hit and lead finding and lead optimisation. In the absence of experimental 3D structures, protein structure prediction often offers a suitable alternative to facilitate structure-based studies. This review outlines recent methodical advances in homology modelling, with a focus on those techniques that necessitate consideration of ligand binding. In this context, model quality estimation deserves special attention because the accuracy and reliability of different structure prediction techniques vary considerably, and the quality of a model ultimately determines its usefulness for structure-based drug discovery. Examples of G-protein-coupled receptors (GPCRs) and ADMET-related proteins were selected to illustrate recent progress and current limitations of protein structure prediction. Basic guidelines for good modelling practice are also provided.
机译:药物靶标和抗靶蛋白的结构性观点及其与生物活性分子的分子相互作用在很大程度上推动了许多药物发现领域,包括目标验证,击中和铅发现和铅优化。在没有实验3D结构的情况下,蛋白质结构预测通常提供适当的替代方案,以促进基于结构的研究。该综述概述了同源性建模中的最近有条理的进步,重点是那些需要考虑配体结合的技术。在这种情况下,模型质量估计值得特别注意,因为不同结构预测技术的准确性和可靠性随之而来,而模型的质量最终决定了其基于结构的药物发现的用途。选择G蛋白偶联受体(GPCR)和备用额外蛋白质的实例,以说明蛋白质结构预测的最近进展和电流限制。还提供了良好建模实践的基本指南。

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