Investigation of Glycosylphosphatidylinositol (GPI)‐Plasma Membrane Interaction in Live Cells and the Influence of GPI Glycan Structure on the Interaction

Author:

Kundu Sayan1,Jaiswal Mohit1,Babu Mullapudi Venkanna1,Guo Jiatong1,Kamat Manasi1,Basso Kari B.1,Guo Zhongwu12ORCID

Affiliation:

1. Department of Chemistry University of Florida Gainesville FL 32611 USA

2. UF Health Cancer Centre University of Florida Gainesville FL 32611 USA

Abstract

AbstractGlycosylphosphatidylinositols (GPIs) need to interact with other components in the cell membrane to transduce transmembrane signals. A bifunctional GPI probe was employed for photoaffinity‐based proximity labelling and identification of GPI‐interacting proteins in the cell membrane. This probe contained the entire core structure of GPIs and was functionalized with photoreactive diazirine and clickable alkyne to facilitate its crosslinking with proteins and attachment of an affinity tag. It was disclosed that this probe was more selective than our previously reported probe containing only a part structure of the GPI core for cell membrane incorporation and an improved probe for studying GPI‐cell membrane interaction. Eighty‐eight unique membrane proteins, many of which are related to GPIs/GPI‐anchored proteins, were identified utilizing this probe. The proteomics dataset is a valuable resource for further analyses and data mining to find new GPI‐related proteins and signalling pathways. A comparison of these results with those of our previous probe provided direct evidence for the profound impact of GPI glycan structure on its interaction with the cell membrane.

Funder

National Institute of General Medical Sciences

Office of Research Infrastructure Programs, National Institutes of Health

Publisher

Wiley

Subject

General Chemistry,Catalysis,Organic Chemistry

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