Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.

Glycolipids are major components of the plasma membrane, interacting with themselves, other lipids, and proteins to form an array of heterogeneous domains with diverse biological properties. Considerable effort has been focused on identifying protein binding partners for glycolipids and the glycan s...

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Main Authors: Rinaldi, S, Brennan, K, Goodyear, C, O'Leary, C, Schiavo, G, Crocker, P, Willison, H
Format: Journal article
Language:English
Published: 2009
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author Rinaldi, S
Brennan, K
Goodyear, C
O'Leary, C
Schiavo, G
Crocker, P
Willison, H
author_facet Rinaldi, S
Brennan, K
Goodyear, C
O'Leary, C
Schiavo, G
Crocker, P
Willison, H
author_sort Rinaldi, S
collection OXFORD
description Glycolipids are major components of the plasma membrane, interacting with themselves, other lipids, and proteins to form an array of heterogeneous domains with diverse biological properties. Considerable effort has been focused on identifying protein binding partners for glycolipids and the glycan specificity for these interactions, largely achieved through assessing interactions between proteins and homogenous, single species glycolipid preparations. This approach risks overlooking both the enhancing and attenuating roles of heterogeneous glycolipid complexes in modulating lectin binding. Here we report a simple method for assessing lectin-glycolipid interactions. An automatic thin-layer chromatography sampler is employed to create easily reproducible arrays of glycolipids and their heterodimeric complexes immobilized on a synthetic polyvinyl-difluoride membrane. This array can then be probed with much smaller quantities of reagents than would be required using existing techniques such as ELISA and thin-layer chromatography with immuno-overlay. Using this protocol, we have established that the binding of bacterial toxins, lectins, and antibodies can each be attenuated, enhanced, or unaffected in the presence of glycolipid complexes, as compared with individual, isolated glycolipids. These findings underpin the wide-ranging influence and importance of glycolipid-glycolipid cis interactions when the nature of protein-carbohydrate recognition events is being assessed.
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spelling oxford-uuid:ad76add4-3ecc-495a-9279-79f9e9ad49052022-03-27T03:35:43ZAnalysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.Journal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:ad76add4-3ecc-495a-9279-79f9e9ad4905EnglishSymplectic Elements at Oxford2009Rinaldi, SBrennan, KGoodyear, CO'Leary, CSchiavo, GCrocker, PWillison, HGlycolipids are major components of the plasma membrane, interacting with themselves, other lipids, and proteins to form an array of heterogeneous domains with diverse biological properties. Considerable effort has been focused on identifying protein binding partners for glycolipids and the glycan specificity for these interactions, largely achieved through assessing interactions between proteins and homogenous, single species glycolipid preparations. This approach risks overlooking both the enhancing and attenuating roles of heterogeneous glycolipid complexes in modulating lectin binding. Here we report a simple method for assessing lectin-glycolipid interactions. An automatic thin-layer chromatography sampler is employed to create easily reproducible arrays of glycolipids and their heterodimeric complexes immobilized on a synthetic polyvinyl-difluoride membrane. This array can then be probed with much smaller quantities of reagents than would be required using existing techniques such as ELISA and thin-layer chromatography with immuno-overlay. Using this protocol, we have established that the binding of bacterial toxins, lectins, and antibodies can each be attenuated, enhanced, or unaffected in the presence of glycolipid complexes, as compared with individual, isolated glycolipids. These findings underpin the wide-ranging influence and importance of glycolipid-glycolipid cis interactions when the nature of protein-carbohydrate recognition events is being assessed.
spellingShingle Rinaldi, S
Brennan, K
Goodyear, C
O'Leary, C
Schiavo, G
Crocker, P
Willison, H
Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title_full Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title_fullStr Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title_full_unstemmed Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title_short Analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays.
title_sort analysis of lectin binding to glycolipid complexes using combinatorial glycoarrays
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