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Phosphorylation barcodes direct biased chemokine signaling at CXCR3

Authors :
Dylan S. Eiger
Jeffrey S. Smith
Tujin Shi
Tomasz Maciej Stepniewski
Chia-Feng Tsai
Christopher Honeycutt
Noelia Boldizsar
Julia Gardner
Carrie D. Nicora
Ahmed M. Moghieb
Kouki Kawakami
Issac Choi
Kevin Zheng
Anmol Warman
Priya Alagesan
Nicole M. Knape
Ouwen Huang
Justin D. Silverman
Richard D. Smith
Asuka Inoue
Jana Selent
Jon M. Jacobs
Sudarshan Rajagopal
Source :
bioRxiv
Publication Year :
2023
Publisher :
Cold Spring Harbor Laboratory, 2023.

Abstract

SUMMARYG protein-coupled receptor (GPCR) biased agonism, the activation of some signaling pathways over others, is thought to largely be due to differential receptor phosphorylation, or “phosphorylation barcodes.” At chemokine receptors, ligands act as “biased agonists” with complex signaling profiles, which contributes to the limited success in pharmacologically targeting these receptors. Here, mass spectrometry-based global phosphoproteomics revealed that CXCR3 chemokines generate different phosphorylation barcodes associated with differential transducer activation. Chemokine stimulation resulted in distinct changes throughout the kinome in global phosphoproteomic studies. Mutation of CXCR3 phosphosites altered β-arrestin conformation in cellular assays and was confirmed by molecular dynamics simulations. T cells expressing phosphorylation-deficient CXCR3 mutants resulted in agonist- and receptor-specific chemotactic profiles. Our results demonstrate that CXCR3 chemokines are non-redundant and act as biased agonists through differential encoding of phosphorylation barcodes and lead to distinct physiological processes.

Subjects

Subjects :
Article

Details

Database :
OpenAIRE
Journal :
bioRxiv
Accession number :
edsair.doi.dedup.....0d64ac211402e87f03d776926ffc7bce