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BioLiP2:一个更新的生物相关配体-蛋白质相互作用结构数据库。

BioLiP2: an updated structure database for biologically relevant ligand-protein interactions.

机构信息

Department of Computational Medicine and Bioinformatics, University of Michigan, Ann Arbor, MI 48109, USA.

Department of Biological Chemistry, University of Michigan, Ann Arbor, MI 48109, USA.

出版信息

Nucleic Acids Res. 2024 Jan 5;52(D1):D404-D412. doi: 10.1093/nar/gkad630.

Abstract

With the progress of structural biology, the Protein Data Bank (PDB) has witnessed rapid accumulation of experimentally solved protein structures. Since many structures are determined with purification and crystallization additives that are unrelated to a protein's in vivo function, it is nontrivial to identify the subset of protein-ligand interactions that are biologically relevant. We developed the BioLiP2 database (https://zhanggroup.org/BioLiP) to extract biologically relevant protein-ligand interactions from the PDB database. BioLiP2 assesses the functional relevance of the ligands by geometric rules and experimental literature validations. The ligand binding information is further enriched with other function annotations, including Enzyme Commission numbers, Gene Ontology terms, catalytic sites, and binding affinities collected from other databases and a manual literature survey. Compared to its predecessor BioLiP, BioLiP2 offers significantly greater coverage of nucleic acid-protein interactions, and interactions involving large complexes that are unavailable in PDB format. BioLiP2 also integrates cutting-edge structural alignment algorithms with state-of-the-art structure prediction techniques, which for the first time enables composite protein structure and sequence-based searching and significantly enhances the usefulness of the database in structure-based function annotations. With these new developments, BioLiP2 will continue to be an important and comprehensive database for docking, virtual screening, and structure-based protein function analyses.

摘要

随着结构生物学的进步,蛋白质数据库 (PDB) 见证了实验解决的蛋白质结构的快速积累。由于许多结构是通过与蛋白质体内功能无关的纯化和结晶添加剂来确定的,因此识别具有生物学相关性的蛋白质-配体相互作用子集并非易事。我们开发了 BioLiP2 数据库(https://zhanggroup.org/BioLiP),从 PDB 数据库中提取具有生物学相关性的蛋白质-配体相互作用。BioLiP2 通过几何规则和实验文献验证来评估配体的功能相关性。配体结合信息还通过其他功能注释进行了丰富,包括从其他数据库和手动文献调查中收集的酶委员会编号、基因本体术语、催化位点和结合亲和力。与它的前身 BioLiP 相比,BioLiP2 提供了更大程度的核酸-蛋白质相互作用和涉及大型复合物的相互作用的覆盖,这些在 PDB 格式中不可用。BioLiP2 还集成了最先进的结构对齐算法和最先进的结构预测技术,这首次实现了基于复合蛋白质结构和序列的搜索,并显著提高了数据库在基于结构的功能注释中的有用性。有了这些新的发展,BioLiP2 将继续成为对接、虚拟筛选和基于结构的蛋白质功能分析的重要和全面的数据库。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a100/10767969/2926b03519a6/gkad630figgra1.jpg

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