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Fabrication of carbohydrate microarrays by boronate formation
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Fabrication of carbohydrate microarrays by boronate formation

Avijit K. Adak, Ting-Wei Lin, Ben-Yuan LiChun-Cheng Lin
Methods in Molecular Biology, 卷.1518, 頁碼.43-53
2017

摘要

Boronate formation Boronic acid Carbohydrate-protein interactions Carbohydrates Glass slides Glycan immobilization Lectins Microarrays Molecular Biology Genetics
The interactions between soluble carbohydrates and/or surface displayed glycans and protein receptors are essential to many biological processes and cellular recognition events. Carbohydrate microarrays provide opportunities for high-throughput quantitative analysis of carbohydrate-protein interactions. Over the past decade,various techniques have been implemented for immobilizing glycans on solid surfaces in a microarray format. Herein,we describe a detailed protocol for fabricating carbohydrate microarrays that capitalizes on the intrinsic reactivity of boronic acid toward carbohydrates to form stable boronate diesters. A large variety of unprotected carbohydrates ranging in structure from simple disaccharides and trisaccharides to considerably more complex human milk and blood group (oligo)saccharides have been covalently immobilized in a single step on glass slides,which were derivatized with high-affinity boronic acid ligands. The immobilized ligands in these microarrays maintain the receptor-binding activities including those of lectins and antibodies according to the structures of their pendant carbohydrates for rapid analysis of a number of carbohydrate-recognition events within 30 h. This method facilitates the direct construction of otherwise difficult to obtain carbohydrate microarrays from underivatized glycans.

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