Koch Julian, Elbæk Camilla Reiter, Priesmann Dominik, Damgaard Rune Busk
Department of Biotechnology and Biomedicine, Technical University of Denmark, Søltofts Plads, DK-2800, Kongens Lyngby, Denmark.
Chembiochem. 2025 May 27;26(10):e202500114. doi: 10.1002/cbic.202500114. Epub 2025 Apr 21.
Modification of proteins and other biomolecules with ubiquitin regulates virtually all aspects of eukaryotic cell biology. Ubiquitin can be attached to substrates as a monomer or as an array of polyubiquitin chains with defined linkages between the ubiquitin moieties. Each ubiquitin linkage type adopts a distinct structure, enabling the individual linkage types to mediate specific functions or outcomes in the cell. The dynamics, heterogeneity, and in some cases low abundance, make analysis of linkage type-specific ubiquitin signaling a challenging and complex task. Herein, the strategies and molecular tools available for enrichment, detection, and characterization of linkage type-specific ubiquitin signaling, are reviewed. The molecular "toolbox" consists of a range of molecularly different affinity reagents, including antibodies and antibody-like molecules, affimers, engineered ubiquitin-binding domains, catalytically inactive deubiquitinases, and macrocyclic peptides, each with their unique characteristics and binding modes. The molecular engineering of these ubiquitin-binding molecules makes them useful tools and reagents that can be coupled to a range of analytical methods, such as immunoblotting, fluorescence microscopy, mass spectrometry-based proteomics, or enzymatic analyses to aid in deciphering the ever-expanding complexity of ubiquitin modifications.
用泛素修饰蛋白质和其他生物分子几乎调节着真核细胞生物学的各个方面。泛素可以作为单体或作为一系列具有特定泛素部分之间连接的多聚泛素链附着到底物上。每种泛素连接类型都采用独特的结构,使各个连接类型能够在细胞中介导特定的功能或结果。其动态性、异质性以及在某些情况下的低丰度,使得分析连接类型特异性泛素信号成为一项具有挑战性和复杂性的任务。在此,综述了可用于富集、检测和表征连接类型特异性泛素信号的策略和分子工具。分子“工具箱”由一系列分子结构不同的亲和试剂组成,包括抗体和抗体样分子、亲和体、工程化泛素结合结构域、催化失活的去泛素酶和大环肽,每种都有其独特的特性和结合模式。这些泛素结合分子的分子工程使其成为有用的工具和试剂,可与一系列分析方法相结合,如免疫印迹、荧光显微镜、基于质谱的蛋白质组学或酶促分析,以帮助解读不断扩展的泛素修饰复杂性。