York Structural Biology Laboratory, Department of Chemistry, University of York, York, United Kingdom.
MRC Laboratory of Molecular Biology, University of Cambridge, Cambridge, United Kingdom.
Acta Crystallogr D Struct Biol. 2024 Sep 1;80(Pt 9):647-660. doi: 10.1107/S2059798324007794. Epub 2024 Aug 29.
Proteins frequently undergo covalent modification at the post-translational level, which involves the covalent attachment of chemical groups onto amino acids. This can entail the singular or multiple addition of small groups, such as phosphorylation; long-chain modifications, such as glycosylation; small proteins, such as ubiquitination; as well as the interconversion of chemical groups, such as the formation of pyroglutamic acid. These post-translational modifications (PTMs) are essential for the normal functioning of cells, as they can alter the physicochemical properties of amino acids and therefore influence enzymatic activity, protein localization, protein-protein interactions and protein stability. Despite their inherent importance, accurately depicting PTMs in experimental studies of protein structures often poses a challenge. This review highlights the role of PTMs in protein structures, as well as the prevalence of PTMs in the Protein Data Bank, directing the reader to accurately built examples suitable for use as a modelling reference.
蛋白质在翻译后水平经常发生共价修饰,涉及化学基团共价连接到氨基酸上。这可能涉及单个或多个小基团的添加,如磷酸化;长链修饰,如糖基化;小分子蛋白质,如泛素化;以及化学基团的相互转化,如焦谷氨酸的形成。这些翻译后修饰(PTMs)对于细胞的正常功能至关重要,因为它们可以改变氨基酸的理化性质,从而影响酶活性、蛋白质定位、蛋白质-蛋白质相互作用和蛋白质稳定性。尽管它们具有内在的重要性,但在蛋白质结构的实验研究中准确描述 PTMs 常常是一个挑战。本文综述了 PTMs 在蛋白质结构中的作用,以及 PTMs 在蛋白质数据库中的普遍性,为读者提供了准确构建的示例,这些示例适合用作建模参考。