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Liposomal glyco-microarray for studying glycolipid-protein interactions

  • Yong Ma
  • , Irena Sobkiv
  • , Valentinas Gruzdys
  • , Hailong Zhang
  • , Xue Sun
  • Cleveland State University
  • Liaoning Shihua University

Research output: Contribution to journalArticlepeer-review

24 Scopus citations

Abstract

A microarray enables high-throughput interaction screening of numerous biomolecules; however, fabrication of a microarray composed of cellular membrane components has proven difficult. We report fabrication of a liposomal glyco-microarray by using an azide-reactive liposome that carries synthetic and natural glycolipids via chemically selective and biocompatible liposome immobilization chemistry. Briefly, liposomes carrying anchor lipid dipalmitoylphosphatidylethanolamine (DPPE)- PEG2000-triphenylphosphine and ganglioside (GM1 or GM3) were prepared first and were then printed onto an azide-modified glass slide so as to afford a liposomal glyco-microarray via Staudinger ligation. Fluorescent dye release kinetics and fluorescence imaging confirmed successful liposome immobilization and specific protein binding to the intact arrayed glycoliposomes. The liposomal glyco-microarray with different gangliosides showed their specific lectin and toxin binding with different binding affinity. The azide-reactive liposome provides a facile strategy for fabrication of either a natural or a synthetic glycolipid-based membrane-mimetic glycoarray. This liposomal glyco-microarray is simple and broadly applicable and thus will find important biomedical applications, such as studying glycolipid-protein interactions and toxin screening applications. © Springer-Verlag 2012.
Original languageEnglish
Pages (from-to)51-58
Number of pages8
JournalAnalytical and Bioanalytical Chemistry
Volume404
Issue number1
DOIs
StatePublished - Jul 1 2012

Keywords

  • Glycoarray
  • Glycolipid
  • Lectin
  • Liposome
  • Toxin

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