Department of Technology and Biotechnology of Drugs, Faculty of Pharmacy, Jagiellonian University Medical College, Kraków, Poland.
Methods Mol Biol. 2024;2780:3-14. doi: 10.1007/978-1-0716-3985-6_1.
Despite the development of methods for the experimental determination of protein structures, the dissonance between the number of known sequences and their solved structures is still enormous. This is particularly evident in protein-protein complexes. To fill this gap, diverse technologies have been developed to study protein-protein interactions (PPIs) in a cellular context including a range of biological and computational methods. The latter derive from techniques originally published and applied almost half a century ago and are based on interdisciplinary knowledge from the nexus of the fields of biology, chemistry, and physics about protein sequences, structures, and their folding. Protein-protein docking, the main protagonist of this chapter, is routinely treated as an integral part of protein research. Herein, we describe the basic foundations of the whole process in general terms, but step by step from protein representations through docking methods and evaluation of complexes to their final validation.
尽管已经开发出了用于实验确定蛋白质结构的方法,但已知序列的数量与其已解决结构之间的不匹配仍然很大。这在蛋白质-蛋白质复合物中尤为明显。为了弥补这一差距,已经开发了多种技术来在细胞环境中研究蛋白质-蛋白质相互作用 (PPI),包括一系列生物学和计算方法。后者源自几乎半个世纪前最初发表和应用的技术,并且基于生物学、化学和物理学领域的交叉学科知识,涉及蛋白质序列、结构及其折叠。蛋白质对接是本章的主要内容,通常被视为蛋白质研究的一个组成部分。在此,我们从蛋白质表示形式开始,逐步描述整个过程的基本原理,通过对接方法和复合物的评估,直到最终验证。