Dikic Ivan, Wakatsuki Soichi, Walters Kylie J
Institute of Biochemistry II and Cluster of Excellence "Macromolecular Complexes", Goethe University Frankfurt, Germany.
Nat Rev Mol Cell Biol. 2009 Oct;10(10):659-71. doi: 10.1038/nrm2767.
Ubiquitin-binding domains (UBDs) are modular elements that bind non-covalently to the protein modifier ubiquitin. Recent atomic-level resolution structures of ubiquitin-UBD complexes have revealed some of the mechanisms that underlie the versatile functions of ubiquitin in vivo. The preferences of UBDs for ubiquitin chains of specific length and linkage are central to these functions. These preferences originate from multimeric interactions, whereby UBDs synergistically bind multiple ubiquitin molecules, and from contacts with regions that link ubiquitin molecules into a polymer. The sequence context of UBDs and the conformational changes that follow their binding to ubiquitin also contribute to ubiquitin signalling. These new structure-based insights provide strategies for controlling cellular processes by targeting ubiquitin-UBD interfaces.
泛素结合结构域(UBDs)是与蛋白质修饰因子泛素非共价结合的模块化元件。最近泛素-UBD复合物的原子水平分辨率结构揭示了泛素在体内多种功能背后的一些机制。UBDs对特定长度和连接方式的泛素链的偏好是这些功能的核心。这些偏好源于多聚体相互作用,即UBDs协同结合多个泛素分子,以及与将泛素分子连接成聚合物的区域的接触。UBDs的序列背景以及它们与泛素结合后发生的构象变化也有助于泛素信号传导。这些基于结构的新见解为通过靶向泛素-UBD界面来控制细胞过程提供了策略。