Target-Specific Chemical Acylation of Lectins by Ligand-Tethered DMAP Catalysts
- 13 December 2007
- journal article
- research article
- Published by American Chemical Society (ACS) in Journal of the American Chemical Society
- Vol. 130 (1), 245-251
- https://doi.org/10.1021/ja075684q
Abstract
Because sugar-binding proteins, so-called lectins, play important roles in many biological phenomena, the lectin-selective labeling should be useful for investigating biological processes involving lectins as well as providing molecular tools for analysis of saccharides and these derivatives. We describe herein a new strategy for lectin-selective labeling based on an acyl transfer reaction directed by ligand-tethered DMAP (4-dimethylaminopyridine). DMAP is an effective acyl transfer catalyst, which can activate an acyl ester for its transfer to a nucleophilic residue. To direct the acyl transfer reaction to a lectin of interest, we attached the DMAP to a saccharide ligand specific for the target lectin. It was clearly demonstrated by biochemical analyses that the target-selective labeling of Congerin II, an animal lectin having selective affinity for Lactose/LacNAc (N-acetyllactosamine), was achieved in the presence of Lac-tethered DMAPs and acyl donors containing probes such as fluorescent molecules or biotin. Conventional peptide mapping experiments using HPLC and tandem mass−mass analysis revealed that the acyl transfer reaction site-specifically occurred at Tyr 51 of Cong II. This strategy was successfully extended to other lectins by changing the ligand part of the ligand-tethered DMAP. We also demonstrated that this labeling method is applicable not only to purified lectin in test tubes, but also to crude mixtures such as E. coli lysates or homogenized animal tissue samples expressing Congerin.Keywords
This publication has 28 references indexed in Scilit:
- A Fluorescent Lectin Array Using Supramolecular Hydrogel for Simple Detection and Pattern Profiling for Various GlycoconjugatesJournal of the American Chemical Society, 2006
- Transition metal catalyzed methods for site-selective protein modificationCurrent Opinion in Chemical Biology, 2006
- Miniaturization of Microwave‐Assisted Carbohydrate Functionalization to Create Oligosaccharide MicroarraysChemBioChem, 2006
- Tyrosine-Selective Protein Alkylation Using π-Allylpalladium ComplexesJournal of the American Chemical Society, 2006
- Luminescent Saccharide Biosensor by Using Lanthanide‐Bound Lectin Labeled with FluoresceinChemBioChem, 2005
- High-throughput identification of fucosyltransferase inhibitors using carbohydrate microarraysBioorganic & Medicinal Chemistry Letters, 2004
- Carbohydrate Chips for Studying High-Throughput Carbohydrate−Protein InteractionsJournal of the American Chemical Society, 2004
- Construction of Artificial Signal Transducers on a Lectin Surface by Post‐Photoaffinity‐Labeling Modification for Fluorescent Saccharide BiosensorsChemistry – A European Journal, 2003
- Polyvalent Interactions in Biological Systems: Implications for Design and Use of Multivalent Ligands and InhibitorsAngewandte Chemie International Edition, 1998
- 4‐Dialkylaminopyridines as Highly Active Acylation Catalysts. [New synthetic method (25)]Angewandte Chemie International Edition in English, 1978