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A human lectin microarray for sperm surface glycosylation analysis

  • Yangyang Sun
  • , Li Cheng
  • , Yihua Gu
  • , Aijie Xin
  • , Bin Wu
  • , Shumin Zhou
  • , Shujuan Gu
  • , Yin Liu
  • , Hua Diao
  • , Huijuan Shi
  • , Guangyu Wang
  • , Sheng Ce Ta*
  • *Corresponding author for this work
  • Shanghai Jiao Tong University
  • School of Marine Science and Technology, Harbin Institute of Technology Weihai
  • Fudan University

Research output: Contribution to journalArticlepeer-review

Abstract

Glycosylation is one of the most abundant and functionally important protein post-translational modifications. As such, technology for efficient glycosylation analysis is in high demand. Lectin microarrays are a powerful tool for such investigations and have been successfully applied for a variety of glycobiological studies. However, most of the current lectin microarrays are primarily constructed from plant lectins, which are not well suited for studies of human glycosylation because of the extreme complexity of human glycans. Herein, we constructed a human lectin microarray with 60 human lectin and lectin-like proteins. All of the lectins and lectin-like proteins were purified from yeast, and most showed binding to human glycans. To demonstrate the applicability of the human lectin microarray, human sperm were probed on the microarray and strong bindings were observed for several lectins, including galectin-1, 7, 8, GalNAc-T6, and ERGIC-53 (LMAN1). These bindings were validated by flow cytometry and fluorescence immunostaining. Further, mass spectrometry analysis showed that galectin-1 binds several membrane-associated proteins including heat shock protein 90. Finally, functional assays showed that binding of galectin-8 could significantly enhance the acrosome reaction within human sperms. To our knowledge, this is the first construction of a human lectin microarray, and we anticipate it will find wide use for a range of human or mammalian studies, alone or in combination with plant lectin microarrays.

Original languageEnglish
Pages (from-to)2839-2851
Number of pages13
JournalMolecular and Cellular Proteomics
Volume15
Issue number9
DOIs
StatePublished - Sep 2016
Externally publishedYes

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