| Literature DB >> 33621778 |
Giacomo Biagiotti1, Edvin Purić2, Iztok Urbančič3, Ana Krišelj3, Matjaž Weiss2, Janez Mravljak2, Cristina Gellini1, Luigi Lay4, Fabrizio Chiodo5, Marko Anderluh6, Stefano Cicchi7, Barbara Richichi8.
Abstract
Lectins are involved in a wide range of carbohydrate mediated recognition processes. Therefore, the availability of highly performant fluorescent tools tailored for lectin targeting and able to efficiently track events related to such key targets is in high demand. We report here on the synthesis of the glyco-BODIPYs 1 and 2, based on the efficient combination of a Heck-like cross coupling and a Knoevenagel condensation, which revealed efficient in addressing lectins. In particular, glyco-BODIPY 1 has two glycosidase stable C-mannose residues, which act as DC-SIGN (dendritic cell-specific intercellular adhesion molecule-3-grabbing non-integrin) targeting modules. By using live-cell fluorescence microscopy, we proved that BODIPY-mannose 1 was efficiently taken up by immune cells expressing DC-SIGN receptors. Super-resolution stimulated emission depletion (STED) microscopy further revealed that the internalized 1 localized in membranes of endosomes, proving that 1 is a reliable tool also in STED applications. Of note, glyco-BODIPY 1 contains an aryl-azido group, which allows further functionalization of the glycoprobe with bioactive molecules, thus paving the way for the use of 1 for tracking lectin-mediated cell internalization in diverse biological settings.Entities:
Keywords: BODIPY; DC-SIGN; Glycan; Mannose binding lectins; Stimulated emission depletion microscopy
Year: 2021 PMID: 33621778 DOI: 10.1016/j.bioorg.2021.104730
Source DB: PubMed Journal: Bioorg Chem ISSN: 0045-2068 Impact factor: 5.275