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Absolute Affinities from Quantitative Shotgun Glycomics Using Concentration-Independent (COIN) Native Mass Spectrometry.
Bui, Duong T; Favell, James; Kitova, Elena N; Li, Zhixiong; McCord, Kelli A; Schmidt, Edward N; Mozaneh, Fahima; Elaish, Mohamed; El-Hawiet, Amr; St-Pierre, Yves; Hobman, Tom C; Macauley, Matthew S; Mahal, Lara K; Flynn, Morris R; Klassen, John S.
Afiliação
  • Bui DT; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Favell J; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Kitova EN; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Li Z; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • McCord KA; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Schmidt EN; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Mozaneh F; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
  • Elaish M; Department of Cell Biology, University of Alberta, Edmonton T6G 2H7, AB, Canada.
  • El-Hawiet A; Poultry Diseases Department, Faculty of Veterinary Medicine, Cairo University, Giza 12211, Egypt.
  • St-Pierre Y; Department of Pharmacognosy, Faculty of Pharmacy, Alexandria University, Alexandria 21561, Egypt.
  • Hobman TC; Institut National de la Recherche Scientifique (INRS), INRS-Centre Armand-Frappier Santé Biotechnologie, Laval H7 V 1B7, QC, Canada.
  • Macauley MS; Department of Cell Biology, University of Alberta, Edmonton T6G 2H7, AB, Canada.
  • Mahal LK; Department of Medical Microbiology and Immunology, University of Alberta, Edmonton T6G 2E1, AB, Canada.
  • Flynn MR; Li Ka Shing Institute of Virology, University of Alberta, Edmonton T6G 2E1, Alberta, Canada.
  • Klassen JS; Department of Chemistry, University of Alberta, Edmonton T6G 2G2, Alberta, Canada.
ACS Cent Sci ; 9(7): 1374-1387, 2023 Jul 26.
Article em En | MEDLINE | ID: mdl-37521792
Native mass spectrometry (nMS) screening of natural glycan libraries against glycan-binding proteins (GBPs) is a powerful tool for ligand discovery. However, as the glycan concentrations are unknown, affinities cannot be measured directly from natural libraries. Here, we introduce Concentration-Independent (COIN)-nMS, which enables quantitative screening of natural glycan libraries by exploiting slow mixing of solutions inside a nanoflow electrospray ionization emitter. The affinities (Kd) of detected GBP-glycan interactions are determined, simultaneously, from nMS analysis of their time-dependent relative abundance changes. We establish the reliability of COIN-nMS using interactions between purified glycans and GBPs with known Kd values. We also demonstrate the implementation of COIN-nMS using the catch-and-release (CaR)-nMS assay for glycosylated GBPs. The COIN-CaR-nMS results obtained for plant, fungal, viral, and human lectins with natural libraries containing hundreds of N-glycans and glycopeptides highlight the assay's versatility for discovering new ligands, precisely measuring their affinities, and uncovering "fine" specificities. Notably, the COIN-CaR-nMS results clarify the sialoglycan binding properties of the SARS-CoV-2 receptor binding domain and establish the recognition of monosialylated hybrid and biantennary N-glycans. Moreover, pharmacological depletion of host complex N-glycans reduces both pseudotyped virions and SARS-CoV-2 cell entry, suggesting that complex N-glycans may serve as attachment factors.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ACS Cent Sci Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Canadá

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: ACS Cent Sci Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Canadá