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Informatic deconvolution of biased GPCR signaling mechanisms from in vivo pharmacological experimentation.

Authors :
Maudsley, Stuart
Martin, Bronwen
Janssens, Jonathan
Etienne, Harmonie
Jushaj, Areta
van Gastel, Jaana
Willemsen, Ann
Chen, Hongyu
Gesty-Palmer, Diane
Luttrell, Louis M.
Source :
Methods. Jan2016, Vol. 92, p51-63. 13p.
Publication Year :
2016

Abstract

Ligands possessing different physico-chemical structures productively interact with G protein-coupled receptors generating distinct downstream signaling events due to their abilities to activate/select idiosyncratic receptor entities (‘receptorsomes’) from the full spectrum of potential receptor partners. We have employed multiple novel informatic approaches to identify and characterize the in vivo transcriptomic signature of an arrestin-signaling biased ligand, [D-Trp 12 ,Tyr 34 ]-bPTH(7-34), acting at the parathyroid hormone type 1 receptor (PTH 1 R), across six different murine tissues after chronic drug exposure. We are able to demonstrate that [D-Trp 12 ,Tyr 34 ]-bPTH(7-34) elicits a distinctive arrestin-signaling focused transcriptomic response that is more coherently regulated, in an arrestin signaling-dependent manner, across more tissues than that of the pluripotent endogenous PTH 1 R ligand, hPTH(1-34). This arrestin-focused response signature is strongly linked with the transcriptional regulation of cell growth and development. Our informatic deconvolution of a conserved arrestin-dependent transcriptomic signature from wild type mice demonstrates a conceptual framework within which the in vivo outcomes of biased receptor signaling may be further investigated or predicted. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10462023
Volume :
92
Database :
Academic Search Index
Journal :
Methods
Publication Type :
Academic Journal
Accession number :
111878814
Full Text :
https://doi.org/10.1016/j.ymeth.2015.05.013