Valimberti Ilaria, Tiberti Matteo, Lambrughi Matteo, Sarcevic Boris, Papaleo Elena
Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, 20126, Milan (Italy).
Cell Cycle and Cancer Unit, St. Vincent's Institute of Medical Research and The Department of Medicine, St. Vincent's Hospital, The University of Melbourne, Fitzroy, Melbourne, Victoria 3065, Australia.
Sci Rep. 2015 Oct 14;5:14849. doi: 10.1038/srep14849.
Protein phosphorylation is a modification that offers a dynamic and reversible mechanism to regulate the majority of cellular processes. Numerous diseases are associated with aberrant regulation of phosphorylation-induced switches. Phosphorylation is emerging as a mechanism to modulate ubiquitination by regulating key enzymes in this pathway. The molecular mechanisms underpinning how phosphorylation regulates ubiquitinating enzymes, however, are elusive. Here, we show the high conservation of a functional site in E2 ubiquitin-conjugating enzymes. In catalytically active E2s, this site contains aspartate or a phosphorylatable serine and we refer to it as the conserved E2 serine/aspartate (CES/D) site. Molecular simulations of substrate-bound and -unbound forms of wild type, mutant and phosphorylated E2s, provide atomistic insight into the role of the CES/D residue for optimal E2 activity. Both the size and charge of the side group at the site play a central role in aligning the substrate lysine toward E2 catalytic cysteine to control ubiquitination efficiency. The CES/D site contributes to the fingerprint of the E2 superfamily. We propose that E2 enzymes can be divided into constitutively active or regulated families. E2s characterized by an aspartate at the CES/D site signify constitutively active E2s, whereas those containing a serine can be regulated by phosphorylation.
蛋白质磷酸化是一种修饰,它提供了一种动态且可逆的机制来调节大多数细胞过程。许多疾病都与磷酸化诱导开关的异常调节有关。磷酸化正逐渐成为一种通过调节该途径中的关键酶来调控泛素化的机制。然而,磷酸化如何调节泛素化酶的分子机制仍不清楚。在这里,我们展示了E2泛素结合酶中一个功能位点的高度保守性。在具有催化活性的E2中,该位点含有天冬氨酸或可磷酸化的丝氨酸,我们将其称为保守的E2丝氨酸/天冬氨酸(CES/D)位点。对野生型、突变型和磷酸化E2的底物结合和未结合形式的分子模拟,为CES/D残基对最佳E2活性的作用提供了原子水平的见解。该位点侧链基团的大小和电荷在使底物赖氨酸与E2催化半胱氨酸对齐以控制泛素化效率方面起着核心作用。CES/D位点有助于E2超家族的特征识别。我们提出E2酶可分为组成型活性或可调节家族。在CES/D位点以天冬氨酸为特征的E2表示组成型活性E2,而含有丝氨酸的E2可受磷酸化调节。