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Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists.

Publication ,  Journal Article
Pfeiffer, CT; Wang, J; Paulo, JA; Jiang, X; Gygi, SP; Rockman, HA
Published in: Journal of proteome research
June 2021

Angiotensin II type 1 receptors (AT1Rs) are one of the most widely studied G-protein-coupled receptors. To fully appreciate the diversity in cellular signaling profiles activated by AT1R transducer-biased ligands, we utilized peroxidase-catalyzed proximity labeling to capture proteins in close proximity to AT1Rs in response to six different ligands: angiotensin II (full agonist), S1I8 (partial agonist), TRV055 and TRV056 (G-protein-biased agonists), and TRV026 and TRV027 (β-arrestin-biased agonists) at 90 s, 10 min, and 60 min after stimulation (ProteomeXchange Identifier PXD023814). We systematically analyzed the kinetics of AT1R trafficking and determined that distinct ligands lead AT1R to different cellular compartments for downstream signaling activation and receptor degradation/recycling. Distinct proximity labeling of proteins from a number of functional classes, including GTPases, adaptor proteins, and kinases, was activated by different ligands suggesting unique signaling and physiological roles of the AT1R. Ligands within the same class, that is, either G-protein-biased or β-arrestin-biased, shared high similarity in their labeling profiles. A comparison between ligand classes revealed distinct signaling activation such as greater labeling by G-protein-biased ligands on ESCRT-0 complex proteins that act as the sorting machinery for ubiquitinated proteins. Our study provides a comprehensive analysis of AT1R receptor-trafficking kinetics and signaling activation profiles induced by distinct classes of ligands.

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Published In

Journal of proteome research

DOI

EISSN

1535-3907

ISSN

1535-3893

Publication Date

June 2021

Volume

20

Issue

6

Start / End Page

3256 / 3267

Related Subject Headings

  • beta-Arrestins
  • Signal Transduction
  • Receptor, Angiotensin, Type 1
  • Proteomics
  • Ligands
  • Biochemistry & Molecular Biology
  • 34 Chemical sciences
  • 31 Biological sciences
  • 06 Biological Sciences
  • 03 Chemical Sciences
 

Citation

APA
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ICMJE
MLA
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Pfeiffer, C. T., Wang, J., Paulo, J. A., Jiang, X., Gygi, S. P., & Rockman, H. A. (2021). Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists. Journal of Proteome Research, 20(6), 3256–3267. https://doi.org/10.1021/acs.jproteome.1c00080
Pfeiffer, Conrad T., Jialu Wang, Joao A. Paulo, Xue Jiang, Steven P. Gygi, and Howard A. Rockman. “Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists.Journal of Proteome Research 20, no. 6 (June 2021): 3256–67. https://doi.org/10.1021/acs.jproteome.1c00080.
Pfeiffer CT, Wang J, Paulo JA, Jiang X, Gygi SP, Rockman HA. Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists. Journal of proteome research. 2021 Jun;20(6):3256–67.
Pfeiffer, Conrad T., et al. “Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists.Journal of Proteome Research, vol. 20, no. 6, June 2021, pp. 3256–67. Epmc, doi:10.1021/acs.jproteome.1c00080.
Pfeiffer CT, Wang J, Paulo JA, Jiang X, Gygi SP, Rockman HA. Mapping Angiotensin II Type 1 Receptor-Biased Signaling Using Proximity Labeling and Proteomics Identifies Diverse Actions of Biased Agonists. Journal of proteome research. 2021 Jun;20(6):3256–3267.
Journal cover image

Published In

Journal of proteome research

DOI

EISSN

1535-3907

ISSN

1535-3893

Publication Date

June 2021

Volume

20

Issue

6

Start / End Page

3256 / 3267

Related Subject Headings

  • beta-Arrestins
  • Signal Transduction
  • Receptor, Angiotensin, Type 1
  • Proteomics
  • Ligands
  • Biochemistry & Molecular Biology
  • 34 Chemical sciences
  • 31 Biological sciences
  • 06 Biological Sciences
  • 03 Chemical Sciences