School of Mathematical Sciences, Nankai University, Tianjin 300071, China.
MOE Frontiers Science Center for Nonlinear Expectations, Research Center for Mathematics and Interdisciplinary Sciences, Shandong University, Qingdao 266237, China.
Genomics Proteomics Bioinformatics. 2024 May 9;22(1). doi: 10.1093/gpbjnl/qzae001.
Since its establishment in 2013, BioLiP has become one of the widely used resources for protein-ligand interactions. Nevertheless, several known issues occurred with it over the past decade. For example, the protein-ligand interactions are represented in the form of single chain-based tertiary structures, which may be inappropriate as many interactions involve multiple protein chains (known as quaternary structures). We sought to address these issues, resulting in Q-BioLiP, a comprehensive resource for quaternary structure-based protein-ligand interactions. The major features of Q-BioLiP include: (1) representing protein structures in the form of quaternary structures rather than single chain-based tertiary structures; (2) pairing DNA/RNA chains properly rather than separation; (3) providing both experimental and predicted binding affinities; (4) retaining both biologically relevant and irrelevant interactions to alleviate the wrong justification of ligands' biological relevance; and (5) developing a new quaternary structure-based algorithm for the modelling of protein-ligand complex structure. With these new features, Q-BioLiP is expected to be a valuable resource for studying biomolecule interactions, including protein-small molecule interaction, protein-metal ion interaction, protein-peptide interaction, protein-protein interaction, protein-DNA/RNA interaction, and RNA-small molecule interaction. Q-BioLiP is freely available at https://yanglab.qd.sdu.edu.cn/Q-BioLiP/.
自 2013 年成立以来,BioLiP 已成为广泛用于蛋白质-配体相互作用的资源之一。然而,在过去的十年中,它出现了几个已知问题。例如,蛋白质-配体相互作用以单链为基础的三级结构形式表示,这可能不合适,因为许多相互作用涉及多个蛋白质链(称为四级结构)。我们试图解决这些问题,从而产生了 Q-BioLiP,这是一个基于四级结构的蛋白质-配体相互作用的综合资源。Q-BioLiP 的主要特点包括:(1)以四级结构而不是单链为基础的三级结构表示蛋白质结构;(2)正确配对 DNA/RNA 链,而不是分离;(3)提供实验和预测的结合亲和力;(4)保留生物相关和不相关的相互作用,以减轻配体生物相关性的错误论证;(5)开发一种新的基于四级结构的算法,用于建模蛋白质-配体复合物结构。有了这些新特性,Q-BioLiP 有望成为研究生物分子相互作用的有价值资源,包括蛋白质-小分子相互作用、蛋白质-金属离子相互作用、蛋白质-肽相互作用、蛋白质-蛋白质相互作用、蛋白质-DNA/RNA 相互作用和 RNA-小分子相互作用。Q-BioLiP 可在 https://yanglab.qd.sdu.edu.cn/Q-BioLiP/ 免费获得。