Back to Search Start Over

Identification of Phosphorylation Codes for Arrestin Recruitment by G protein-Coupled Receptors

Authors :
Anton Barty
Karsten Melcher
Kuntal Pal
Oliver P. Ernst
Xiang Gao
Raymond C. Stevens
Yanyong Kang
Vsevolod V. Gurevich
Ned Van Eps
Vadim Cherezov
Patrick R. Griffin
Naomi R. Latorraca
X. Edward Zhou
Yuanzheng He
Ron O. Dror
Devrishi Goswami
H. Eric Xu
Yanting Yin
Henry N. Chapman
Wayne L. Hubbell
Thomas A. White
Parker W. de Waal
Publication Year :
2017

Abstract

Summary G protein-coupled receptors (GPCRs) mediate diverse signaling in part through interaction with arrestins, whose binding promotes receptor internalization and signaling through G protein-independent pathways. High-affinity arrestin binding requires receptor phosphorylation, often at the receptor's C-terminal tail. Here, we report an X-ray free electron laser (XFEL) crystal structure of the rhodopsin-arrestin complex, in which the phosphorylated C terminus of rhodopsin forms an extended intermolecular β sheet with the N-terminal β strands of arrestin. Phosphorylation was detected at rhodopsin C-terminal tail residues T336 and S338. These two phospho-residues, together with E341, form an extensive network of electrostatic interactions with three positively charged pockets in arrestin in a mode that resembles binding of the phosphorylated vasopressin-2 receptor tail to β-arrestin-1. Based on these observations, we derived and validated a set of phosphorylation codes that serve as a common mechanism for phosphorylation-dependent recruitment of arrestins by GPCRs.

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....e875d566f97382ea0dcab8ff6a9381c6