Solid-Phase Synthesis for the Identification of High-Affinity Bivalent Lectin Ligands
- 17 April 2003
- journal article
- Published by American Chemical Society (ACS) in The Journal of Organic Chemistry
- Vol. 68 (15) , 5805-5811
- https://doi.org/10.1021/jo0207271
Abstract
The development of carbohydrate-based therapeutics has been frustrated by the low affinities that characterize protein-carbohydrate complexation. Because of the oligomeric nature of most lectins, the use of multivalency may offer a successful strategy for the creation of high-affinity ligands. The solid-phase evaluation of libraries of peptide-linked multivalent ligands facilitates rapid examination of a large fraction of linker structure space. If such solid-phase assays are to replicate solution binding behavior, the potential for intermolecular bivalent binding on bead surfaces must be eliminated. Here we report the solid-phase synthesis and analysis of peptide-linked, spatially segregated mono- and bivalent ligands for the legume lectin concanavalin A. Bead shaving protocols were used for the creation of beads displaying spatially segregated binding sequences on the surface of Tentagel resins. The same ligands were also synthesized on PEGA resin to determine the effect of ligand presentation on solid-phase binding. While we set out to determine the lower limit of assay sensitivity, the unexpected observation that intermolecular bivalent ligand binding is enhanced for bivalent ligands relative to monovalent ligands allowed direct observation of the level of surface blocking required to prevent intermolecular bivalent ligand binding. For a protein with binding sites separated by 65 Å, approximately 99.9% of Tentagel1 surface sites and 99.99% of the total sites on a PEGA bead must be blocked to prevent intermolecular bivalent binding. We also report agglutination and calorimetric solution-phase binding studies of mono- and bivalent peptide-linked ligands.Keywords
This publication has 35 references indexed in Scilit:
- Synthesis of α- and β-Carbon-Linked Serine Analogues of the Pk TrisaccharideThe Journal of Organic Chemistry, 1999
- Polyvalent Interactions in Biological Systems: Implications for Design and Use of Multivalent Ligands and InhibitorsAngewandte Chemie International Edition in English, 1998
- Varying the Size of Multivalent Ligands: The Dependence of Concanavalin A Binding on Neoglycopolymer LengthJournal of the American Chemical Society, 1997
- Interactions of bacterial adhesins with extracellular matrix and plasma proteins: pathogenic implications and therapeutic possibilitiesFEMS Immunology & Medical Microbiology, 1996
- Synthesis of divalent α-D-mannopyranosylated clusters having enhanced binding affinities towards concanavalin A and pea lectinsBioorganic & Medicinal Chemistry Letters, 1996
- Synthesis and lectin binding properties of dendritic mannopyranosideChemical Communications, 1996
- Structural Basis of Trimannoside Recognition by Concanavalin AJournal of Biological Chemistry, 1996
- C-Allylation of 1- and 6-Bromosugars with Allylic Sulfides and SulfonesThe Journal of Organic Chemistry, 1996
- A single-bead decode strategy using electrospray ionization mass spectrometry and a new photolabile linker: 3-Amino-3-(2-nitrophenyl)propionic acidMolecular Diversity, 1995
- Interactions of concanavalin a with a trimannosyl oligosaccharide fragment of complex and high mannose type glycopeptidesBiochemical and Biophysical Research Communications, 1985