REPIN, Department of Biology, University of Copenhagen, Ole Maaløes vej 5, DK-2200 Copenhagen N, Denmark.
Department of Biology, Linderstrøm-Lang Centre for Protein Science, University of Copenhagen, Ole Maaløes vej 5, DK-2200 Copenhagen N, Denmark.
Essays Biochem. 2022 Dec 16;66(7):901-913. doi: 10.1042/EBC20220060.
Phosphorylation is the most common post-translational modification (PTM) in eukaryotes, occurring particularly frequently in intrinsically disordered proteins (IDPs). These proteins are highly flexible and dynamic by nature. Thus, it is intriguing that the addition of a single phosphoryl group to a disordered chain can impact its function so dramatically. Furthermore, as many IDPs carry multiple phosphorylation sites, the number of possible states increases, enabling larger complexities and novel mechanisms. Although a chemically simple and well-understood process, the impact of phosphorylation on the conformational ensemble and molecular function of IDPs, not to mention biological output, is highly complex and diverse. Since the discovery of the first phosphorylation site in proteins 75 years ago, we have come to a much better understanding of how this PTM works, but with the diversity of IDPs and their capacity for carrying multiple phosphoryl groups, the complexity grows. In this Essay, we highlight some of the basic effects of IDP phosphorylation, allowing it to serve as starting point when embarking on studies into this topic. We further describe how recent complex cases of multisite phosphorylation of IDPs have been instrumental in widening our view on the effect of protein phosphorylation. Finally, we put forward perspectives on the phosphorylation of IDPs, both in relation to disease and in context of other PTMs; areas where deep insight remains to be uncovered.
磷酸化是真核生物中最常见的翻译后修饰(PTM),在固有无序蛋白质(IDP)中尤其频繁。这些蛋白质本质上具有高度的灵活性和动态性。因此,令人感到好奇的是,在无序链上添加一个磷酸基团如何能如此显著地影响其功能。此外,由于许多 IDP 带有多个磷酸化位点,可能的状态数量增加,从而能够实现更大的复杂性和新颖的机制。尽管磷酸化是一个化学上简单且理解透彻的过程,但磷酸化对 IDP 构象整体和分子功能的影响,更不用说对生物学结果的影响,是高度复杂和多样化的。自从 75 年前发现蛋白质中的第一个磷酸化位点以来,我们对这种 PTM 的作用有了更好的理解,但随着 IDP 的多样性及其携带多个磷酸基团的能力的增加,复杂性也在增加。在这篇文章中,我们强调了 IDP 磷酸化的一些基本影响,使其成为研究这一课题的起点。我们进一步描述了 IDP 多磷酸化的最近复杂案例如何拓宽了我们对蛋白质磷酸化影响的看法。最后,我们提出了关于 IDP 磷酸化的观点,包括与疾病的关系以及与其他 PTM 的关系;在这些领域,仍有待深入了解。