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Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study

TGR5 is the first identified bile acid-sensing G-protein coupled receptor, which has emerged as a potential therapeutic target for metabolic disorders. So far, structural and multimerization properties are largely unknown for TGR5. We used a combined strategy applying cellular biology, Multiparamete...

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Autores principales: Greife, Annemarie, Felekyan, Suren, Ma, Qijun, Gertzen, Christoph G. W., Spomer, Lina, Dimura, Mykola, Peulen, Thomas O., Wöhler, Christina, Häussinger, Dieter, Gohlke, Holger, Keitel, Verena, Seidel, Claus A. M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5105069/
https://www.ncbi.nlm.nih.gov/pubmed/27833095
http://dx.doi.org/10.1038/srep36792
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author Greife, Annemarie
Felekyan, Suren
Ma, Qijun
Gertzen, Christoph G. W.
Spomer, Lina
Dimura, Mykola
Peulen, Thomas O.
Wöhler, Christina
Häussinger, Dieter
Gohlke, Holger
Keitel, Verena
Seidel, Claus A. M.
author_facet Greife, Annemarie
Felekyan, Suren
Ma, Qijun
Gertzen, Christoph G. W.
Spomer, Lina
Dimura, Mykola
Peulen, Thomas O.
Wöhler, Christina
Häussinger, Dieter
Gohlke, Holger
Keitel, Verena
Seidel, Claus A. M.
author_sort Greife, Annemarie
collection PubMed
description TGR5 is the first identified bile acid-sensing G-protein coupled receptor, which has emerged as a potential therapeutic target for metabolic disorders. So far, structural and multimerization properties are largely unknown for TGR5. We used a combined strategy applying cellular biology, Multiparameter Image Fluorescence Spectroscopy (MFIS) for quantitative FRET analysis, and integrative modelling to obtain structural information about dimerization and higher-order oligomerization assemblies of TGR5 wildtype (wt) and Y111 variants fused to fluorescent proteins. Residue 111 is located in transmembrane helix 3 within the highly conserved ERY motif. Co-immunoprecipitation and MFIS-FRET measurements with gradually increasing acceptor to donor concentrations showed that TGR5 wt forms higher-order oligomers, a process disrupted in TGR5 Y111A variants. From the concentration dependence of the MFIS-FRET data we conclude that higher-order oligomers – likely with a tetramer organization - are formed from dimers, the smallest unit suggested for TGR5 Y111A variants. Higher-order oligomers likely have a linear arrangement with interaction sites involving transmembrane helix 1 and helix 8 as well as transmembrane helix 5. The latter interaction is suggested to be disrupted by the Y111A mutation. The proposed model of TGR5 oligomer assembly broadens our view of possible oligomer patterns and affinities of class A GPCRs.
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spelling pubmed-51050692016-11-17 Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study Greife, Annemarie Felekyan, Suren Ma, Qijun Gertzen, Christoph G. W. Spomer, Lina Dimura, Mykola Peulen, Thomas O. Wöhler, Christina Häussinger, Dieter Gohlke, Holger Keitel, Verena Seidel, Claus A. M. Sci Rep Article TGR5 is the first identified bile acid-sensing G-protein coupled receptor, which has emerged as a potential therapeutic target for metabolic disorders. So far, structural and multimerization properties are largely unknown for TGR5. We used a combined strategy applying cellular biology, Multiparameter Image Fluorescence Spectroscopy (MFIS) for quantitative FRET analysis, and integrative modelling to obtain structural information about dimerization and higher-order oligomerization assemblies of TGR5 wildtype (wt) and Y111 variants fused to fluorescent proteins. Residue 111 is located in transmembrane helix 3 within the highly conserved ERY motif. Co-immunoprecipitation and MFIS-FRET measurements with gradually increasing acceptor to donor concentrations showed that TGR5 wt forms higher-order oligomers, a process disrupted in TGR5 Y111A variants. From the concentration dependence of the MFIS-FRET data we conclude that higher-order oligomers – likely with a tetramer organization - are formed from dimers, the smallest unit suggested for TGR5 Y111A variants. Higher-order oligomers likely have a linear arrangement with interaction sites involving transmembrane helix 1 and helix 8 as well as transmembrane helix 5. The latter interaction is suggested to be disrupted by the Y111A mutation. The proposed model of TGR5 oligomer assembly broadens our view of possible oligomer patterns and affinities of class A GPCRs. Nature Publishing Group 2016-11-11 /pmc/articles/PMC5105069/ /pubmed/27833095 http://dx.doi.org/10.1038/srep36792 Text en Copyright © 2016, The Author(s) http://creativecommons.org/licenses/by/4.0/ This work is licensed under a Creative Commons Attribution 4.0 International License. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in the credit line; if the material is not included under the Creative Commons license, users will need to obtain permission from the license holder to reproduce the material. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Greife, Annemarie
Felekyan, Suren
Ma, Qijun
Gertzen, Christoph G. W.
Spomer, Lina
Dimura, Mykola
Peulen, Thomas O.
Wöhler, Christina
Häussinger, Dieter
Gohlke, Holger
Keitel, Verena
Seidel, Claus A. M.
Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title_full Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title_fullStr Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title_full_unstemmed Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title_short Structural assemblies of the di- and oligomeric G-protein coupled receptor TGR5 in live cells: an MFIS-FRET and integrative modelling study
title_sort structural assemblies of the di- and oligomeric g-protein coupled receptor tgr5 in live cells: an mfis-fret and integrative modelling study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5105069/
https://www.ncbi.nlm.nih.gov/pubmed/27833095
http://dx.doi.org/10.1038/srep36792
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