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CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response

CXCR4 and CXCR7 are prominent G protein-coupled receptors (GPCRs) for chemokine stromal cell-derived factor-1 (SDF-1/CXCL12). This study demonstrates that CXCR4 and CXCR7 induce differential effects during cardiac lineage differentiation and β-adrenergic response in human induced pluripotent stem ce...

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Autores principales: Ceholski, Delaine K., Turnbull, Irene C., Pothula, Venu, Lecce, Laura, Jarrah, Andrew A., Kho, Changwon, Lee, Ahyoung, Hadri, Lahouaria, Costa, Kevin D., Hajjar, Roger J., Tarzami, Sima T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859259/
https://www.ncbi.nlm.nih.gov/pubmed/28711757
http://dx.doi.org/10.1016/j.scr.2017.06.015
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author Ceholski, Delaine K.
Turnbull, Irene C.
Pothula, Venu
Lecce, Laura
Jarrah, Andrew A.
Kho, Changwon
Lee, Ahyoung
Hadri, Lahouaria
Costa, Kevin D.
Hajjar, Roger J.
Tarzami, Sima T.
author_facet Ceholski, Delaine K.
Turnbull, Irene C.
Pothula, Venu
Lecce, Laura
Jarrah, Andrew A.
Kho, Changwon
Lee, Ahyoung
Hadri, Lahouaria
Costa, Kevin D.
Hajjar, Roger J.
Tarzami, Sima T.
author_sort Ceholski, Delaine K.
collection PubMed
description CXCR4 and CXCR7 are prominent G protein-coupled receptors (GPCRs) for chemokine stromal cell-derived factor-1 (SDF-1/CXCL12). This study demonstrates that CXCR4 and CXCR7 induce differential effects during cardiac lineage differentiation and β-adrenergic response in human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs). Using lentiviral vectors to ablate CXCR4 and/or CXCR7 expression, hiPSC-CMs were tested for phenotypic and functional properties due to gene knockdown. Gene expression and flow cytometry confirmed the pluripotent and cardiomyocyte phenotype of undifferentiated and differentiated hiPSCs, respectively. Although reduction of CXCR4 and CXCR7 expression resulted in a delayed cardiac phenotype, only knockdown of CXCR4 delayed the spontaneous beating of hiPSC-CMs. Knockdown of CXCR4 and CXCR7 differentially altered calcium transients and β-adrenergic response in hiPSC-CMs. In engineered cardiac tissues, depletion of CXCR4 or CXCR7 had opposing effects on developed force and chronotropic response to β-agonists. This work demonstrates distinct roles for the SDF-1/CXCR4 or CXCR7 network in hiPSC-derived ventricular cardiomyocyte specification, maturation and function.
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spelling pubmed-58592592018-08-01 CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response Ceholski, Delaine K. Turnbull, Irene C. Pothula, Venu Lecce, Laura Jarrah, Andrew A. Kho, Changwon Lee, Ahyoung Hadri, Lahouaria Costa, Kevin D. Hajjar, Roger J. Tarzami, Sima T. Stem Cell Res Article CXCR4 and CXCR7 are prominent G protein-coupled receptors (GPCRs) for chemokine stromal cell-derived factor-1 (SDF-1/CXCL12). This study demonstrates that CXCR4 and CXCR7 induce differential effects during cardiac lineage differentiation and β-adrenergic response in human induced pluripotent stem cell-derived cardiomyocytes (hiPSC-CMs). Using lentiviral vectors to ablate CXCR4 and/or CXCR7 expression, hiPSC-CMs were tested for phenotypic and functional properties due to gene knockdown. Gene expression and flow cytometry confirmed the pluripotent and cardiomyocyte phenotype of undifferentiated and differentiated hiPSCs, respectively. Although reduction of CXCR4 and CXCR7 expression resulted in a delayed cardiac phenotype, only knockdown of CXCR4 delayed the spontaneous beating of hiPSC-CMs. Knockdown of CXCR4 and CXCR7 differentially altered calcium transients and β-adrenergic response in hiPSC-CMs. In engineered cardiac tissues, depletion of CXCR4 or CXCR7 had opposing effects on developed force and chronotropic response to β-agonists. This work demonstrates distinct roles for the SDF-1/CXCR4 or CXCR7 network in hiPSC-derived ventricular cardiomyocyte specification, maturation and function. 2017-07-08 2017-08 /pmc/articles/PMC5859259/ /pubmed/28711757 http://dx.doi.org/10.1016/j.scr.2017.06.015 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Ceholski, Delaine K.
Turnbull, Irene C.
Pothula, Venu
Lecce, Laura
Jarrah, Andrew A.
Kho, Changwon
Lee, Ahyoung
Hadri, Lahouaria
Costa, Kevin D.
Hajjar, Roger J.
Tarzami, Sima T.
CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title_full CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title_fullStr CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title_full_unstemmed CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title_short CXCR4 and CXCR7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
title_sort cxcr4 and cxcr7 play distinct roles in cardiac lineage specification and pharmacologic β-adrenergic response
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5859259/
https://www.ncbi.nlm.nih.gov/pubmed/28711757
http://dx.doi.org/10.1016/j.scr.2017.06.015
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