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蛋白质-配体晶体结构模型的验证:小分子和肽配体

Validation of Protein-Ligand Crystal Structure Models: Small Molecule and Peptide Ligands.

作者信息

Pozharski Edwin, Deller Marc C, Rupp Bernhard

机构信息

Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, MD, USA.

Stanford ChEM-H, Macromolecular Structure Knowledge Center, Stanford University, Shriram Center, 443 Via Ortega, Room 097, MC5082, Stanford, CA, 94305-4125, USA.

出版信息

Methods Mol Biol. 2017;1607:611-625. doi: 10.1007/978-1-4939-7000-1_25.

Abstract

Models of target proteins in complex with small molecule ligands or peptide ligands are of significant interest to the biomedical research community. Structure-guided lead discovery and structure-based drug design make extensive use of such models. The bound ligands comprise only a small fraction of the total X-ray scattering mass, and therefore particular care must be taken to properly validate the atomic model of the ligand as experimental data can often be scarce. The ligand model must be validated against both the primary experimental data and the local environment, specifically: (1) the primary evidence in the form of the electron density, (2) examined for reasonable stereochemistry, and (3) the chemical plausibility of the binding interactions must be inspected. Tools that assist the researcher in the validation process are presented.

摘要

与小分子配体或肽配体复合的靶蛋白模型受到生物医学研究界的极大关注。基于结构的先导化合物发现和基于结构的药物设计广泛使用此类模型。结合的配体仅占总X射线散射质量的一小部分,因此必须格外小心以正确验证配体的原子模型,因为实验数据往往很少。配体模型必须针对主要实验数据和局部环境进行验证,具体包括:(1)以电子密度形式存在的主要证据,(2)检查其合理的立体化学,以及(3)检查结合相互作用的化学合理性。本文介绍了有助于研究人员进行验证过程的工具。

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