Combinatorial Chemoenzymatic Synthesis and High-Throughput Screening of Sialosides
- 27 August 2008
- journal article
- research article
- Published by American Chemical Society (ACS) in ACS Chemical Biology
- Vol. 3 (9) , 567-576
- https://doi.org/10.1021/cb800127n
Abstract
Although the vital roles of structures containing sialic acid in biomolecular recognition are well documented, limited information is available on how sialic acid structural modifications, sialyl linkages, and the underlying glycan structures affect the binding or the activity of sialic acid-recognizing proteins and related downstream biological processes. A novel combinatorial chemoenzymatic method has been developed for the highly efficient synthesis of biotinylated sialosides containing different sialic acid structures and different underlying glycans in 96-well plates from biotinylated sialyltransferase acceptors and sialic acid precursors. By transferring the reaction mixtures to NeutrAvidin-coated plates and assaying for the yields of enzymatic reactions using lectins recognizing sialyltransferase acceptors but not the sialylated products, the biotinylated sialoside products can be directly used, without purification, for high-throughput screening to quickly identify the ligand specificity of sialic acid-binding proteins. For a proof-of-principle experiment, 72 biotinylated α2,6-linked sialosides were synthesized in 96-well plates from 4 biotinylated sialyltransferase acceptors and 18 sialic acid precursors using a one-pot three-enzyme system. High-throughput screening assays performed in NeutrAvidin-coated microtiter plates show that whereas Sambucus nigra Lectin binds to α2,6-linked sialosides with high promiscuity, human Siglec-2 (CD22) is highly selective for a number of sialic acid structures and the underlying glycans in its sialoside ligands.Keywords
This publication has 27 references indexed in Scilit:
- Pasteurella multocida sialic acid aldolase: a promising biocatalystApplied Microbiology and Biotechnology, 2008
- Sialoside Analogue Arrays for Rapid Identification of High Affinity Siglec LigandsJournal of the American Chemical Society, 2008
- CD22: an inhibitory enigmaImmunology, 2008
- N-Terminal 112 amino acid residues are not required for the sialyltransferase activity of Photobacterium damsela α2,6-sialyltransferaseBiotechnology Letters, 2007
- Siglecs and their roles in the immune systemNature Reviews Immunology, 2007
- High‐Throughput Substrate Specificity Studies of Sialidases by Using Chemoenzymatically Synthesized Sialoside LibrariesChemBioChem, 2007
- One-pot three-enzyme chemoenzymatic approach to the synthesis of sialosides containing natural and non-natural functionalitiesNature Protocols, 2006
- Highly Efficient Chemoenzymatic Synthesis of Naturally Occurring and Non‐Natural α‐2,6‐Linked Sialosides: A P. damsela α‐2,6‐Sialyltransferase with Extremely Flexible Donor–Substrate SpecificityAngewandte Chemie International Edition in English, 2006
- Crystal structures of Erythrina cristagalli lectin with bound N-linked oligosaccharide and lactoseGlycobiology, 2004
- Chemical Diversity in the Sialic Acids and Related α-Keto Acids: An Evolutionary PerspectiveChemical Reviews, 2002