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CaviDB:一个蛋白质结构和构象空间中腔及其特征的数据库。

CaviDB: a database of cavities and their features in the structural and conformational space of proteins.

机构信息

Departamento de Ciencia y Tecnologia, Universidad Nacional de Quilmes, Roque Saenz Pena 182, Bernal B1876BXD, Argentina.

出版信息

Database (Oxford). 2023 May 10;2023. doi: 10.1093/database/baad010.

Abstract

Proteins are the structural, functional and evolutionary units of cells. On their surface, proteins are shaped into numerous depressions and protrusions that provide unique microenvironments for ligand binding and catalysis. The dynamics, size and chemical properties of these cavities are essential for a mechanistic understanding of protein function. Here, we present CaviDB, a novel database of cavities and their features in known protein structures. It integrates the results of commonly used cavity detection software with protein features derived from sequence, structural and functional analyses. Each protein in CaviDB is linked to its corresponding conformers, which also facilitates the study of conformational changes in cavities. Our initial release includes ∼927 773 distinct proteins, as well as the characterization of 36 136 869 cavities, of which 1 147 034 were predicted to be drug targets. The structural focus of CaviDB provides the ability to compare cavities and their properties from different conformational states of the protein. CaviDB not only aims to provide a comprehensive database that can be used for various aspects of drug design and discovery but also contributes to a better understanding of the fundamentals of protein structure-function relationships. With its unique approach, CaviDB represents an indispensable resource for the large community of bioinformaticians in particular and biologists in general. Database URL https://www.cavidb.org.

摘要

蛋白质是细胞的结构、功能和进化单位。在其表面,蛋白质被塑造成许多凹陷和突起,为配体结合和催化提供独特的微环境。这些腔的动力学、大小和化学性质对于理解蛋白质功能的机制至关重要。在这里,我们展示了 CaviDB,这是一个已知蛋白质结构中腔及其特征的新型数据库。它将常用的腔检测软件的结果与从序列、结构和功能分析中得出的蛋白质特征相结合。CaviDB 中的每个蛋白质都与其对应的构象体相关联,这也方便了对腔中构象变化的研究。我们的初始版本包含约 927773 个不同的蛋白质,以及 36136869 个腔的特征描述,其中 1147034 个被预测为药物靶点。CaviDB 的结构重点提供了比较来自蛋白质不同构象状态的腔及其特性的能力。CaviDB 不仅旨在提供一个可用于药物设计和发现各个方面的综合数据库,还有助于更好地理解蛋白质结构-功能关系的基础。CaviDB 以其独特的方法,成为生物信息学家,特别是生物学家不可或缺的资源。数据库网址:https://www.cavidb.org。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/82fa/10171230/0e76f85cf4b9/baad010f1.jpg

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