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Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors
Myocardin-related transcription factors (MRTFs: myocardin/MYOCD, MRTF-A/MRTFA, and MRTF-B/MRTFB) are co-factors of serum response factor (SRF) that activate the smooth muscle cell (SMC) gene program and that play roles in cardiovascular development and mechanobiology. Gain and loss of function exper...
Autores principales: | , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Frontiers Media S.A.
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446542/ https://www.ncbi.nlm.nih.gov/pubmed/34539433 http://dx.doi.org/10.3389/fphys.2021.710968 |
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author | Liu, Li Rippe, Catarina Hansson, Ola Kryvokhyzha, Dmytro Fisher, Steven Ekman, Mari Swärd, Karl |
author_facet | Liu, Li Rippe, Catarina Hansson, Ola Kryvokhyzha, Dmytro Fisher, Steven Ekman, Mari Swärd, Karl |
author_sort | Liu, Li |
collection | PubMed |
description | Myocardin-related transcription factors (MRTFs: myocardin/MYOCD, MRTF-A/MRTFA, and MRTF-B/MRTFB) are co-factors of serum response factor (SRF) that activate the smooth muscle cell (SMC) gene program and that play roles in cardiovascular development and mechanobiology. Gain and loss of function experiments have defined the SMC gene program under control of MRTFs, yet full understanding of their impact is lacking. In the present study, we tested the hypothesis that the muscarinic M(3) receptor (CHRM3) is regulated by MRTFs together with SRF. Forced expression of MYOCD (8d) in human coronary artery (SMC) followed by RNA-sequencing showed increased levels of M(2), M(3), and M(5) receptors (CHRM2: 2-fold, CHRM3: 16-fold, and CHRM5: 2-fold). The effect of MYOCD on M(3) was confirmed by RT-qPCR using both coronary artery and urinary bladder SMCs, and correlation analyses using human transcriptomic datasets suggested that M(3) may also be regulated by MRTF-B. Head-to-head comparisons of MYOCD, MRTF-A and MRTF-B, argued that while all MRTFs are effective, MRTF-B is the most powerful transactivator of CHRM3, causing a 600-fold increase at 120h. Accordingly, MRTF-B conferred responsiveness to the muscarinic agonist carbachol in Ca(2+) imaging experiments. M(3) was suppressed on treatment with the MRTF-SRF inhibitor CCG-1423 using SMCs transduced with either MRTF-A or MRTF-B and using intact mouse esophagus in culture (by 92±2%). Moreover, silencing of SRF with a short hairpin reduced CHRM3 (by >60%) in parallel with α-actin (ACTA2). Tamoxifen inducible knockout of Srf in smooth muscle reduced Srf (by 54±4%) and Chrm3 (by 41±6%) in the urinary bladder at 10days, but Srf was much less reduced or unchanged in aorta, ileum, colon, trachea, and esophagus. Longer induction (21d) further accentuated the reduction of Chrm3 in the bladder and ileum, but no change was seen in the aorta. Single cell RNA-sequencing revealed that Mrtfb dominates in ECs, while Myocd dominates in SMCs, raising the possibility that Chrm3 may be driven by Mrtfb-Srf in the endothelium and by Myocd-Srf in SMCs. These findings define a novel transcriptional control mechanism for muscarinic M(3) receptors in human cells, and in mice, that could be targeted for therapy. |
format | Online Article Text |
id | pubmed-8446542 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Frontiers Media S.A. |
record_format | MEDLINE/PubMed |
spelling | pubmed-84465422021-09-18 Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors Liu, Li Rippe, Catarina Hansson, Ola Kryvokhyzha, Dmytro Fisher, Steven Ekman, Mari Swärd, Karl Front Physiol Physiology Myocardin-related transcription factors (MRTFs: myocardin/MYOCD, MRTF-A/MRTFA, and MRTF-B/MRTFB) are co-factors of serum response factor (SRF) that activate the smooth muscle cell (SMC) gene program and that play roles in cardiovascular development and mechanobiology. Gain and loss of function experiments have defined the SMC gene program under control of MRTFs, yet full understanding of their impact is lacking. In the present study, we tested the hypothesis that the muscarinic M(3) receptor (CHRM3) is regulated by MRTFs together with SRF. Forced expression of MYOCD (8d) in human coronary artery (SMC) followed by RNA-sequencing showed increased levels of M(2), M(3), and M(5) receptors (CHRM2: 2-fold, CHRM3: 16-fold, and CHRM5: 2-fold). The effect of MYOCD on M(3) was confirmed by RT-qPCR using both coronary artery and urinary bladder SMCs, and correlation analyses using human transcriptomic datasets suggested that M(3) may also be regulated by MRTF-B. Head-to-head comparisons of MYOCD, MRTF-A and MRTF-B, argued that while all MRTFs are effective, MRTF-B is the most powerful transactivator of CHRM3, causing a 600-fold increase at 120h. Accordingly, MRTF-B conferred responsiveness to the muscarinic agonist carbachol in Ca(2+) imaging experiments. M(3) was suppressed on treatment with the MRTF-SRF inhibitor CCG-1423 using SMCs transduced with either MRTF-A or MRTF-B and using intact mouse esophagus in culture (by 92±2%). Moreover, silencing of SRF with a short hairpin reduced CHRM3 (by >60%) in parallel with α-actin (ACTA2). Tamoxifen inducible knockout of Srf in smooth muscle reduced Srf (by 54±4%) and Chrm3 (by 41±6%) in the urinary bladder at 10days, but Srf was much less reduced or unchanged in aorta, ileum, colon, trachea, and esophagus. Longer induction (21d) further accentuated the reduction of Chrm3 in the bladder and ileum, but no change was seen in the aorta. Single cell RNA-sequencing revealed that Mrtfb dominates in ECs, while Myocd dominates in SMCs, raising the possibility that Chrm3 may be driven by Mrtfb-Srf in the endothelium and by Myocd-Srf in SMCs. These findings define a novel transcriptional control mechanism for muscarinic M(3) receptors in human cells, and in mice, that could be targeted for therapy. Frontiers Media S.A. 2021-09-03 /pmc/articles/PMC8446542/ /pubmed/34539433 http://dx.doi.org/10.3389/fphys.2021.710968 Text en Copyright © 2021 Liu, Rippe, Hansson, Kryvokhyzha, Fisher, Ekman and Swärd. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms. |
spellingShingle | Physiology Liu, Li Rippe, Catarina Hansson, Ola Kryvokhyzha, Dmytro Fisher, Steven Ekman, Mari Swärd, Karl Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title | Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title_full | Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title_fullStr | Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title_full_unstemmed | Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title_short | Regulation of the Muscarinic M(3) Receptor by Myocardin-Related Transcription Factors |
title_sort | regulation of the muscarinic m(3) receptor by myocardin-related transcription factors |
topic | Physiology |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8446542/ https://www.ncbi.nlm.nih.gov/pubmed/34539433 http://dx.doi.org/10.3389/fphys.2021.710968 |
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