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Carbohydrate-lectin interactions assayed by SPR
Eric Duverger1, Nathalie Lamerant-Fayel, Natacha Frison
1Glycobiologie, Centre de Biophysique Moléculaire, CNRS et Université d'Orléans, Orléans, France.
Methods in Molecular Biology (Clifton, N.J.)
|March 11, 2010
Summary
Surface plasmon resonance accurately measures lectin-glycoconjugate affinity without protein tags. Immobilizing lectins and using soluble ligands, with specific methods for heterogeneous or small analytes, ensures reproducible results.
Area of Science:
- Carbohydrate Chemistry
- Biophysical Chemistry
- Protein-Ligand Interactions
Background:
- Surface plasmon resonance (SPR) is a label-free technique for studying molecular interactions.
- Lectins are proteins that bind carbohydrates, playing roles in biological recognition.
- Avidity effects from multiple binding sites on lectins can complicate affinity measurements.
Purpose of the Study:
- To optimize surface plasmon resonance (SPR) methods for determining lectin-glycoconjugate binding affinities.
- To address challenges posed by lectin avidity and analyte heterogeneity in SPR.
- To establish reproducible protocols for lectin-ligand interaction analysis.
Main Methods:
- Immobilizing lectins onto sensor chips and using soluble glycoconjugates as analytes.
- Employing the Sips approach for heterogeneous glycoconjugates and oligosaccharide mixtures.
- Utilizing an inhibition assay with neoglycoproteins and small oligosaccharides.
- Direct binding measurements for larger glycoconjugates like peptide-glycocluster conjugates.
- Using simple sugars for sensor chip regeneration to maintain lectin stability.
Main Results:
- Reproducible and accurate affinity data were obtained when lectins were immobilized.
- The Sips approach provided reliable mean binding constants for heterogeneous ligands.
- Inhibition assays effectively determined binding constants for small oligosaccharides.
- Direct measurements were suitable for larger glycoconjugates.
- Simple sugars enabled efficient sensor chip cleaning and prolonged lectin stability.
Conclusions:
- Optimized SPR protocols, including immobilization strategies and specific analytical methods, enable accurate lectin-glycoconjugate affinity determination.
- Careful experimental design is crucial to mitigate avidity effects and ensure data reliability.
- The use of simple sugars for regeneration offers a practical and gentle method for sensor chip maintenance.
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