Bondalapati Somasekhar, Mansour Wissam, Nakasone Mark A, Maity Suman Kumar, Glickman Michael H, Brik Ashraf
Department of Chemistry, Ben-Gurion University of the Negev, P.O. Box 653 Beer-Sheva 8410501 (Israel); Schulich Faculty of Chemistry, Technion-Israel Institute of Technology, 3200008 Haifa (Israel).
Chemistry. 2015 May 11;21(20):7360-4. doi: 10.1002/chem.201500540. Epub 2015 Apr 1.
Modification of ubiquitin by phosphorylation extends the signaling possibilities of this dynamic signal, as it could affect the activity of ligases and the processing of ubiquitin chains by deubiquitinases. The first chemical synthesis of phosphorylated ubiquitin and of Lys63-linked diubiquitin at the proximal, distal or both ubiquitins is reported. This enabled the examination of how such a modification alters E1-E2 activities of the ubiquitination machinery. It is found that E1 charging was not affected, while the assembly of phosphorylated ubiquitin chains was differentially inhibited with E2 enzymes tested. Moreover, this study shows that phosphorylation interferes with the recognition of linkage specific antibodies and the activities of several deubiquitinases. Notably, phosphorylation in the proximal or distal ubiquitin unit has differential effects on specific deubiquitinases. These results support a unique role of phosphorylation in the dynamics of the ubiquitin signal.
泛素的磷酸化修饰扩展了这种动态信号的信号传导可能性,因为它可能影响连接酶的活性以及去泛素化酶对泛素链的加工。本文报道了磷酸化泛素以及近端、远端或两者均磷酸化的 Lys63 连接的双泛素的首次化学合成。这使得研究这种修饰如何改变泛素化机制的 E1-E2 活性成为可能。研究发现,E1 充电不受影响,而磷酸化泛素链的组装在测试的 E2 酶作用下受到不同程度的抑制。此外,该研究表明磷酸化会干扰连接特异性抗体的识别以及几种去泛素化酶的活性。值得注意的是,近端或远端泛素单元中的磷酸化对特定去泛素化酶有不同的影响。这些结果支持了磷酸化在泛素信号动态变化中的独特作用。