Department of Chemistry, Université de Montréal, P.O. Box 6128, Station Downtown, Montréal, Québec H3 C 3 J7, Canada.
Angew Chem Int Ed Engl. 2023 Dec 4;62(49):e202314248. doi: 10.1002/anie.202314248. Epub 2023 Oct 31.
Glycan recognition by glycan-binding proteins is central to the biology of all living organisms. The efficient capture and characterization of relatively weak non-covalent interactions remains an important challenge in various fields of research. Photoaffinity labeling strategies can create covalent bonds between interacting partners, and photoactive scaffolds such as benzophenone, diazirines and aryl azides have proved widely useful. Since their first introduction, relatively few improvements have been advanced and products of photoaffinity labeling remain difficult to detect. We report a fluorinated azido-coumarin scaffold which enables photolabeling under fast and mild activation, and which can leave a fluorescent tag on crosslinked species. Coupling this scaffold to an α-fucoside, we demonstrate fluorogenic photolabeling of glycan-protein interactions over a wide range of affinities. We expect this strategy to be broadly applicable to other chromophores and we envision that such "fluoro-crosslinkers" could become important tools for the traceable capture of non-covalent binding events.
糖基识别糖结合蛋白是所有生物生物学的核心。有效捕获和表征相对较弱的非共价相互作用仍然是各个研究领域的重要挑战。光亲和标记策略可以在相互作用的伙伴之间形成共价键,并且苯并酮、重氮甲烷和芳基叠氮化物等光活性支架已被证明非常有用。自首次引入以来,相对较少的改进已经得到推进,光亲和标记产物仍然难以检测。我们报告了一种氟化的叠氮香豆素支架,该支架可以在快速温和的激活下进行光标记,并可以在交联物种上留下荧光标记。将该支架与 α-岩藻糖苷偶联,我们证明了在广泛的亲和力范围内对糖蛋白相互作用的荧光光标记。我们期望该策略具有广泛的适用性,并且我们设想这种“氟交联剂”可能成为可追踪非共价结合事件的重要工具。