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New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle

Recent evidence suggests that C-X-C chemokine receptor type 4 (CXCR4) heteromerizes with α(1A/B)-adrenoceptors (AR) and atypical chemokine receptor 3 (ACKR3) and that CXCR4:α(1A/B)-AR heteromers are important for α(1)-AR function in vascular smooth muscle cells (VSMC). Structural determinants for CX...

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Autores principales: Evans, Ann E., Tripathi, Abhishek, LaPorte, Heather M., Brueggemann, Lioubov I., Singh, Abhay Kumar, Albee, Lauren J., Byron, Kenneth L., Tarasova, Nadya I., Volkman, Brian F., Cho, Thomas Yoonsang, Gaponenko, Vadim, Majetschak, Matthias
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4926503/
https://www.ncbi.nlm.nih.gov/pubmed/27331810
http://dx.doi.org/10.3390/ijms17060971
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author Evans, Ann E.
Tripathi, Abhishek
LaPorte, Heather M.
Brueggemann, Lioubov I.
Singh, Abhay Kumar
Albee, Lauren J.
Byron, Kenneth L.
Tarasova, Nadya I.
Volkman, Brian F.
Cho, Thomas Yoonsang
Gaponenko, Vadim
Majetschak, Matthias
author_facet Evans, Ann E.
Tripathi, Abhishek
LaPorte, Heather M.
Brueggemann, Lioubov I.
Singh, Abhay Kumar
Albee, Lauren J.
Byron, Kenneth L.
Tarasova, Nadya I.
Volkman, Brian F.
Cho, Thomas Yoonsang
Gaponenko, Vadim
Majetschak, Matthias
author_sort Evans, Ann E.
collection PubMed
description Recent evidence suggests that C-X-C chemokine receptor type 4 (CXCR4) heteromerizes with α(1A/B)-adrenoceptors (AR) and atypical chemokine receptor 3 (ACKR3) and that CXCR4:α(1A/B)-AR heteromers are important for α(1)-AR function in vascular smooth muscle cells (VSMC). Structural determinants for CXCR4 heteromerization and functional consequences of CXCR4:α(1A/B)-AR heteromerization in intact arteries, however, remain unknown. Utilizing proximity ligation assays (PLA) to visualize receptor interactions in VSMC, we show that peptide analogs of transmembrane-domain (TM) 2 and TM4 of CXCR4 selectively reduce PLA signals for CXCR4:α(1A)-AR and CXCR4:ACKR3 interactions, respectively. While both peptides inhibit CXCL12-induced chemotaxis, only the TM2 peptide inhibits phenylephrine-induced Ca(2+)-fluxes, contraction of VSMC and reduces efficacy of phenylephrine to constrict isolated arteries. In a Cre-loxP mouse model to delete CXCR4 in VSMC, we observed 60% knockdown of CXCR4. PLA signals for CXCR4:α(1A/B)-AR and CXCR4:ACKR3 interactions in VSMC, however, remained constant. Our observations point towards TM2/4 of CXCR4 as possible contact sites for heteromerization and suggest that TM-derived peptide analogs permit selective targeting of CXCR4 heteromers. A molecular dynamics simulation of a receptor complex in which the CXCR4 homodimer interacts with α(1A)-AR via TM2 and with ACKR3 via TM4 is presented. Our findings further imply that CXCR4:α(1A)-AR heteromers are important for intrinsic α(1)-AR function in intact arteries and provide initial and unexpected insights into the regulation of CXCR4 heteromerization in VSMC.
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spelling pubmed-49265032016-07-06 New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle Evans, Ann E. Tripathi, Abhishek LaPorte, Heather M. Brueggemann, Lioubov I. Singh, Abhay Kumar Albee, Lauren J. Byron, Kenneth L. Tarasova, Nadya I. Volkman, Brian F. Cho, Thomas Yoonsang Gaponenko, Vadim Majetschak, Matthias Int J Mol Sci Article Recent evidence suggests that C-X-C chemokine receptor type 4 (CXCR4) heteromerizes with α(1A/B)-adrenoceptors (AR) and atypical chemokine receptor 3 (ACKR3) and that CXCR4:α(1A/B)-AR heteromers are important for α(1)-AR function in vascular smooth muscle cells (VSMC). Structural determinants for CXCR4 heteromerization and functional consequences of CXCR4:α(1A/B)-AR heteromerization in intact arteries, however, remain unknown. Utilizing proximity ligation assays (PLA) to visualize receptor interactions in VSMC, we show that peptide analogs of transmembrane-domain (TM) 2 and TM4 of CXCR4 selectively reduce PLA signals for CXCR4:α(1A)-AR and CXCR4:ACKR3 interactions, respectively. While both peptides inhibit CXCL12-induced chemotaxis, only the TM2 peptide inhibits phenylephrine-induced Ca(2+)-fluxes, contraction of VSMC and reduces efficacy of phenylephrine to constrict isolated arteries. In a Cre-loxP mouse model to delete CXCR4 in VSMC, we observed 60% knockdown of CXCR4. PLA signals for CXCR4:α(1A/B)-AR and CXCR4:ACKR3 interactions in VSMC, however, remained constant. Our observations point towards TM2/4 of CXCR4 as possible contact sites for heteromerization and suggest that TM-derived peptide analogs permit selective targeting of CXCR4 heteromers. A molecular dynamics simulation of a receptor complex in which the CXCR4 homodimer interacts with α(1A)-AR via TM2 and with ACKR3 via TM4 is presented. Our findings further imply that CXCR4:α(1A)-AR heteromers are important for intrinsic α(1)-AR function in intact arteries and provide initial and unexpected insights into the regulation of CXCR4 heteromerization in VSMC. MDPI 2016-06-20 /pmc/articles/PMC4926503/ /pubmed/27331810 http://dx.doi.org/10.3390/ijms17060971 Text en © 2016 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Evans, Ann E.
Tripathi, Abhishek
LaPorte, Heather M.
Brueggemann, Lioubov I.
Singh, Abhay Kumar
Albee, Lauren J.
Byron, Kenneth L.
Tarasova, Nadya I.
Volkman, Brian F.
Cho, Thomas Yoonsang
Gaponenko, Vadim
Majetschak, Matthias
New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title_full New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title_fullStr New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title_full_unstemmed New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title_short New Insights into Mechanisms and Functions of Chemokine (C-X-C Motif) Receptor 4 Heteromerization in Vascular Smooth Muscle
title_sort new insights into mechanisms and functions of chemokine (c-x-c motif) receptor 4 heteromerization in vascular smooth muscle
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4926503/
https://www.ncbi.nlm.nih.gov/pubmed/27331810
http://dx.doi.org/10.3390/ijms17060971
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