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  4. On-Chip Neo-Glycopeptide Synthesis for Multivalent Glycan Presentation
 
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On-Chip Neo-Glycopeptide Synthesis for Multivalent Glycan Presentation

Publikationstyp
Journal Article
Date Issued
2020-08-06
Sprache
English
Author(s)
Mende, Marco  
Tsouka, Alexandra  
Heidepriem, Jasmin  
Paris, Grigori  
Mattes, Daniela S.  
Eickelmann, Stephan  
Bordoni, Vittorio
Wawrzinek, Robert
Fuchsberger Felix F.  
Seeberger, Peter H.  
Rademacher, Christoph  
Delbianco, Martina  
Mallagaray, Alvaro  
Loeffler, Felix F.  
TORE-URI
https://hdl.handle.net/11420/59299
Journal
Chemistry - a European journal  
Volume
26
Issue
44
Start Page
9954
End Page
9963
Citation
Chemistry A European Journal 26 (44): 9954-9963 (2020)
Publisher DOI
10.1002/chem.202001291
Scopus ID
2-s2.0-85086320376
ISSN
09476539
Single glycan–protein interactions are often weak, such that glycan binding partners commonly utilize multiple, spatially defined binding sites to enhance binding avidity and specificity. Current array technologies usually neglect defined multivalent display. Laser-based array synthesis technology allows for flexible and rapid on-surface synthesis of different peptides. By combining this technique with click chemistry, neo-glycopeptides were produced directly on a functionalized glass slide in the microarray format. Density and spatial distribution of carbohydrates can be tuned, resulting in well-defined glycan structures for multivalent display. The two lectins concanavalin A and langerin were probed with different glycans on multivalent scaffolds, revealing strong spacing-, density-, and ligand-dependent binding. In addition, we could also measure the surface dissociation constant. This approach allows for a rapid generation, screening, and optimization of a multitude of multivalent scaffolds for glycan binding.
Subjects
click chemistry
combinatorial chemistry
laser-induced forward transfer
lectin
microarrays
DDC Class
600: Technology
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