Hoeller Daniela, Crosetto Nicola, Blagoev Blagoy, Raiborg Camilla, Tikkanen Ritva, Wagner Sebastian, Kowanetz Katarzyna, Breitling Rainer, Mann Matthias, Stenmark Harald, Dikic Ivan
Institute for Biochemistry II, Goethe University Medical School, Theodor-Stern-Kai 7, 60590 Frankfurt, Germany.
Nat Cell Biol. 2006 Feb;8(2):163-9. doi: 10.1038/ncb1354. Epub 2006 Jan 22.
Proteins containing ubiquitin-binding domains (UBDs) interact with ubiquitinated targets and regulate diverse biological processes, including endocytosis, signal transduction, transcription and DNA repair. Many of the UBD-containing proteins are also themselves monoubiquitinated, but the functional role and the mechanisms that underlie this modification are less well understood. Here, we demonstrate that monoubiquitination of the endocytic proteins Sts1, Sts2, Eps15 and Hrs results in intramolecular interactions between ubiquitin and their UBDs, thereby preventing them from binding in trans to ubiquitinated targets. Permanent monoubiquitination of these proteins, mimicked by the fusion of ubiquitin to their carboxyl termini, impairs their ability to regulate trafficking of ubiquitinated receptors. Moreover, we mapped the in vivo monoubiquitination site in Sts2 and demonstrated that its mutation enhances the Sts2-mediated effects of epidermal-growth-factor-receptor downregulation. We propose that monoubiquitination of ubiquitin-binding proteins inhibits their capacity to bind to and control the functions of ubiquitinated targets in vivo.
含有泛素结合结构域(UBDs)的蛋白质与泛素化靶标相互作用,并调节多种生物学过程,包括内吞作用、信号转导、转录和DNA修复。许多含有UBD的蛋白质自身也会发生单泛素化,但这种修饰的功能作用及潜在机制尚不清楚。在此,我们证明内吞蛋白Sts1、Sts2、Eps15和Hrs的单泛素化会导致泛素与其UBD之间发生分子内相互作用,从而阻止它们与泛素化靶标进行反式结合。通过将泛素融合至这些蛋白质的羧基末端来模拟它们的永久单泛素化,会损害它们调节泛素化受体运输的能力。此外,我们确定了Sts2体内的单泛素化位点,并证明该位点的突变增强了Sts2介导的表皮生长因子受体下调效应。我们提出,泛素结合蛋白的单泛素化会抑制其在体内结合并控制泛素化靶标功能的能力。