首页 | 本学科首页   官方微博 | 高级检索  
     检索      


Fluorescent Mimetics of CMP‐Neu5Ac Are Highly Potent,Cell‐Permeable Polarization Probes of Eukaryotic and Bacterial Sialyltransferases and Inhibit Cellular Sialylation
Authors:Dr Johannes J Preidl  Dr Vinayaga S Gnanapragassam  Dr Michael Lisurek  Dr Jörn Saupe  Prof?Dr Rüdiger Horstkorte  Prof?Dr Jörg Rademann
Institution:1. Medicinal Chemistry, Freie Universit?t Berlin, K?nigin‐Luise‐Strasse 2+4, 14195 Berlin (Germany) http://www.bcp.fu‐berlin.de/ag‐rademann;2. Department of Medicinal Chemistry, Leibniz Institut für Molekulare Pharmakologie (FMP), Robert‐R?ssle‐Strasse 10, 13125 Berlin (Germany);3. Institute for Physiological Chemistry, Martin‐Luther University, Hollystrasse 1, 06114 Halle (Germany);4. Department of Medicinal Chemistry, Leibniz Institut für Molekulare Pharmakologie (FMP), Robert‐R?ssle‐Strasse 10, 13125 Berlin (Germany)Medicinal Chemistry, Freie Universit?t Berlin, K?nigin‐Luise‐Strasse 2+4, 14195 Berlin (Germany) http://www.bcp.fu‐berlin.de/ag‐rademann===
Abstract:Oligosaccharides of the glycolipids and glycoproteins at the outer membranes of human cells carry terminal neuraminic acids, which are responsible for recognition events and adhesion of cells, bacteria, and virus particles. The synthesis of neuraminic acid containing glycosides is accomplished by intracellular sialyl transferases. Therefore, the chemical manipulation of cellular sialylation could be very important to interfere with cancer development, inflammations, and infections. The development and applications of the first nanomolar fluorescent inhibitors of sialyl transferases are described herein. The obtained carbohydrate‐nucleotide mimetics were found to bind all four commercially available and tested eukaryotic and bacterial sialyl transferases in a fluorescence polarization assay. Moreover, it was observed that the anionic mimetics intruded rapidly and efficiently into cells in vesicles and translocated to cellular organelles surrounding the nucleus of CHO cells. The new compounds inhibit cellular sialylation in two cell lines and open new perspectives for investigations of cellular sialylation.
Keywords:fluorescence polarization  metastasis  neuraminic acid  protein‐binding probes  sialyltransferases
设为首页 | 免责声明 | 关于勤云 | 加入收藏

Copyright©北京勤云科技发展有限公司  京ICP备09084417号