Oncode Institute & Department of Cell and Chemical Biology, Leiden University Medical Centre, Einthovenweg 20, 2333 ZC, Leiden, The Netherlands.
Present address: Tumor Immunology Department, Radboud Institute for Molecular Sciences, 6525 GA, Nijmegen, The Netherlands.
Chembiochem. 2019 Jan 2;20(1):62-65. doi: 10.1002/cbic.201800520. Epub 2018 Nov 7.
The enzyme-mediated construction of poly-ubiquitin (Ub) chains on target proteins leads to a variety of cellular responses and is involved in processes ranging from protein degradation to cell cycle control and immune responses. This complex post-translational modification system is under intense investigation, but generation of specific Ub chains and tools made thereof is not always trivial. We discovered that native methionine-1-linked polymeric ubiquitin chains can be constructed in a single chemical reaction. We validate correct folding and regioselective attachment of such chains using linkage specific proteases and further demonstrate that these poly-Ub chains can be converted into thioesters by the activating E1-enzyme. Subsequent ligation reactions using these in situ prepared thioesters leads to poly-ubiquitinated peptides.
酶介导的多泛素(Ub)链在靶蛋白上的构建导致了多种细胞反应,并参与了从蛋白质降解到细胞周期控制和免疫反应等过程。这个复杂的翻译后修饰系统正在深入研究,但并非总是能够轻易地产生特定的 Ub 链和相关工具。我们发现,天然甲硫氨酸 1 位连接的聚合泛素链可以在单个化学反应中构建。我们使用连接特异性蛋白酶验证了这些链的正确折叠和区域选择性附着,并进一步证明这些多 Ub 链可以通过激活 E1 酶转化为硫酯。使用这些原位制备的硫酯进行后续连接反应,可得到多泛素化肽。