Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation
The cellular functions of arrestins are determined in part by the pattern of phosphorylation on the G protein-coupled receptors (GPCRs) to which arrestins bind. Here, authors use a library of synthetic phosphopeptide analogues of the GPCR rhodopsin C-terminus and determine the ability of these pepti...
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Nature Portfolio
2019
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oai:doaj.org-article:3fb017c511b74ac5b642a4f342d8976b2021-12-02T14:35:31ZDistinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation10.1038/s41467-019-09204-y2041-1723https://doaj.org/article/3fb017c511b74ac5b642a4f342d8976b2019-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-019-09204-yhttps://doaj.org/toc/2041-1723The cellular functions of arrestins are determined in part by the pattern of phosphorylation on the G protein-coupled receptors (GPCRs) to which arrestins bind. Here, authors use a library of synthetic phosphopeptide analogues of the GPCR rhodopsin C-terminus and determine the ability of these peptides to bind and activate arrestins using a variety of biochemical and biophysical methods.Daniel MayerFred F. DambergerMamidi SamarasimhareddyMiki FeldmuellerZiva VuckovicTilman FlockBrian BauerEshita MuttFranziska ZoselFrédéric H. T. AllainJörg StandfussGebhard F. X. SchertlerXavier DeupiMartha E. SommerMattan HurevichAssaf FriedlerDmitry B. VeprintsevNature PortfolioarticleScienceQENNature Communications, Vol 10, Iss 1, Pp 1-14 (2019) |
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Science Q Daniel Mayer Fred F. Damberger Mamidi Samarasimhareddy Miki Feldmueller Ziva Vuckovic Tilman Flock Brian Bauer Eshita Mutt Franziska Zosel Frédéric H. T. Allain Jörg Standfuss Gebhard F. X. Schertler Xavier Deupi Martha E. Sommer Mattan Hurevich Assaf Friedler Dmitry B. Veprintsev Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
description |
The cellular functions of arrestins are determined in part by the pattern of phosphorylation on the G protein-coupled receptors (GPCRs) to which arrestins bind. Here, authors use a library of synthetic phosphopeptide analogues of the GPCR rhodopsin C-terminus and determine the ability of these peptides to bind and activate arrestins using a variety of biochemical and biophysical methods. |
format |
article |
author |
Daniel Mayer Fred F. Damberger Mamidi Samarasimhareddy Miki Feldmueller Ziva Vuckovic Tilman Flock Brian Bauer Eshita Mutt Franziska Zosel Frédéric H. T. Allain Jörg Standfuss Gebhard F. X. Schertler Xavier Deupi Martha E. Sommer Mattan Hurevich Assaf Friedler Dmitry B. Veprintsev |
author_facet |
Daniel Mayer Fred F. Damberger Mamidi Samarasimhareddy Miki Feldmueller Ziva Vuckovic Tilman Flock Brian Bauer Eshita Mutt Franziska Zosel Frédéric H. T. Allain Jörg Standfuss Gebhard F. X. Schertler Xavier Deupi Martha E. Sommer Mattan Hurevich Assaf Friedler Dmitry B. Veprintsev |
author_sort |
Daniel Mayer |
title |
Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
title_short |
Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
title_full |
Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
title_fullStr |
Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
title_full_unstemmed |
Distinct G protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
title_sort |
distinct g protein-coupled receptor phosphorylation motifs modulate arrestin affinity and activation and global conformation |
publisher |
Nature Portfolio |
publishDate |
2019 |
url |
https://doaj.org/article/3fb017c511b74ac5b642a4f342d8976b |
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