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Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4

β-Arrestins, originally discovered to desensitize activated G protein-coupled receptors, (aka seven-transmembrane receptors, 7TMRs) also mediate 7TMR internalization and G protein-independent signaling via these receptors. More recently, several regulatory roles of β-arrestins for atypical 7TMRs and...

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Autores principales: Shukla, Arun K., Kim, Jihee, Ahn, Seungkirl, Xiao, Kunhong, Shenoy, Sudha K., Liedtke, Wolfgang, Lefkowitz, Robert J.
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2943294/
https://www.ncbi.nlm.nih.gov/pubmed/20650893
http://dx.doi.org/10.1074/jbc.M110.141549
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author Shukla, Arun K.
Kim, Jihee
Ahn, Seungkirl
Xiao, Kunhong
Shenoy, Sudha K.
Liedtke, Wolfgang
Lefkowitz, Robert J.
author_facet Shukla, Arun K.
Kim, Jihee
Ahn, Seungkirl
Xiao, Kunhong
Shenoy, Sudha K.
Liedtke, Wolfgang
Lefkowitz, Robert J.
author_sort Shukla, Arun K.
collection PubMed
description β-Arrestins, originally discovered to desensitize activated G protein-coupled receptors, (aka seven-transmembrane receptors, 7TMRs) also mediate 7TMR internalization and G protein-independent signaling via these receptors. More recently, several regulatory roles of β-arrestins for atypical 7TMRs and non-7TM receptors have emerged. Here, we uncover an entirely novel regulatory role of β-arrestins in cross-talk between the angiotensin receptor (AT1aR) and a member of the transient receptor potential (TRP) ion channel family, TRPV4. AT1aR and TRPV4 form a constitutive complex in the plasma membrane, and angiotensin stimulation leads to recruitment of β-arrestin 1 to this complex. Surprisingly, angiotensin stimulation results in ubiquitination of TRPV4, a process that requires β-arrestin 1, and subsequently to internalization and functional down-regulation of TRPV4. β-Arrestin 1 interacts with, and acts as an adaptor for AIP4, an E3 ubiquitin ligase responsible for TRPV4 ubiquitination. Thus, our data provide the first evidence of a functional link between β-arrestins and TRPV4 and uncovers an entirely novel mechanism to maintain appropriate intracellular Ca(2+) concentration to avoid excessive Ca(2+) signaling.
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spelling pubmed-29432942010-09-27 Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4 Shukla, Arun K. Kim, Jihee Ahn, Seungkirl Xiao, Kunhong Shenoy, Sudha K. Liedtke, Wolfgang Lefkowitz, Robert J. J Biol Chem Signal Transduction β-Arrestins, originally discovered to desensitize activated G protein-coupled receptors, (aka seven-transmembrane receptors, 7TMRs) also mediate 7TMR internalization and G protein-independent signaling via these receptors. More recently, several regulatory roles of β-arrestins for atypical 7TMRs and non-7TM receptors have emerged. Here, we uncover an entirely novel regulatory role of β-arrestins in cross-talk between the angiotensin receptor (AT1aR) and a member of the transient receptor potential (TRP) ion channel family, TRPV4. AT1aR and TRPV4 form a constitutive complex in the plasma membrane, and angiotensin stimulation leads to recruitment of β-arrestin 1 to this complex. Surprisingly, angiotensin stimulation results in ubiquitination of TRPV4, a process that requires β-arrestin 1, and subsequently to internalization and functional down-regulation of TRPV4. β-Arrestin 1 interacts with, and acts as an adaptor for AIP4, an E3 ubiquitin ligase responsible for TRPV4 ubiquitination. Thus, our data provide the first evidence of a functional link between β-arrestins and TRPV4 and uncovers an entirely novel mechanism to maintain appropriate intracellular Ca(2+) concentration to avoid excessive Ca(2+) signaling. American Society for Biochemistry and Molecular Biology 2010-09-24 2010-07-22 /pmc/articles/PMC2943294/ /pubmed/20650893 http://dx.doi.org/10.1074/jbc.M110.141549 Text en © 2010 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Signal Transduction
Shukla, Arun K.
Kim, Jihee
Ahn, Seungkirl
Xiao, Kunhong
Shenoy, Sudha K.
Liedtke, Wolfgang
Lefkowitz, Robert J.
Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title_full Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title_fullStr Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title_full_unstemmed Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title_short Arresting a Transient Receptor Potential (TRP) Channel: β-ARRESTIN 1 MEDIATES UBIQUITINATION AND FUNCTIONAL DOWN-REGULATION OF TRPV4
title_sort arresting a transient receptor potential (trp) channel: β-arrestin 1 mediates ubiquitination and functional down-regulation of trpv4
topic Signal Transduction
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2943294/
https://www.ncbi.nlm.nih.gov/pubmed/20650893
http://dx.doi.org/10.1074/jbc.M110.141549
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