Beiroth Femke, Koudelka Tomas, Overath Thorsten, Knight Stefan D, Tholey Andreas, Lindhorst Thisbe K
Otto Diels Institute of Organic Chemistry, Christiana Albertina University of Kiel, Otto-Hahn-Platz 3/4, 24118 Kiel, Germany.
Systematic Proteomics & Bioanalytics, Institute for Experimental Medicine, Christiana Albertina University of Kiel, Niemannsweg 11, D-24105 Kiel, Germany.
Beilstein J Org Chem. 2018 Jul 24;14:1890-1900. doi: 10.3762/bjoc.14.163. eCollection 2018.
Photoaffinity labeling is frequently employed for the investigation of ligand-receptor interactions in solution. We have employed an interdisciplinary methodology to achieve facile photolabeling of the lectin FimH, which is a bacterial protein, crucial for adhesion, colonization and infection. Following our earlier work, we have here designed and synthesized diazirine-functionalized mannosides as high-affinity FimH ligands and performed an extensive study on photo-crosslinking of the best ligand (mannoside ) with a series of model peptides and FimH. Notably, we have employed high-performance mass spectrometry to be able to detect radiation results with the highest possible accuracy. We are concluding from this study that photolabeling of FimH with sugar diazirines has only very limited success and cannot be regarded a facile approach for covalent modification of FimH.
光亲和标记常用于研究溶液中的配体-受体相互作用。我们采用了一种跨学科方法,以实现对凝集素FimH的简便光标记,FimH是一种细菌蛋白,对粘附、定殖和感染至关重要。继我们早期的工作之后,我们在此设计并合成了重氮环丁烷功能化的甘露糖苷作为高亲和力的FimH配体,并对最佳配体(甘露糖苷)与一系列模型肽和FimH的光交联进行了广泛研究。值得注意的是,我们采用了高性能质谱,以便能够以尽可能高的精度检测辐射结果。我们从这项研究中得出结论,用糖重氮环丁烷对FimH进行光标记仅取得了非常有限的成功,不能被视为对FimH进行共价修饰的简便方法。