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PKA and Epac synergistically inhibit smooth muscle cell proliferation

Cyclic AMP signalling promotes VSMC quiescence in healthy vessels and during vascular healing following injury. Cyclic AMP inhibits VSMC proliferation via mechanisms that are not fully understood. We investigated the role of PKA and Epac signalling on cAMP-induced inhibition of VSMC proliferation. c...

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Autores principales: Hewer, Richard C., Sala-Newby, Graciela B., Wu, Yih-Jer, Newby, Andrew C., Bond, Mark
Formato: Texto
Lenguaje:English
Publicado: Academic Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3093616/
https://www.ncbi.nlm.nih.gov/pubmed/20971121
http://dx.doi.org/10.1016/j.yjmcc.2010.10.010
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author Hewer, Richard C.
Sala-Newby, Graciela B.
Wu, Yih-Jer
Newby, Andrew C.
Bond, Mark
author_facet Hewer, Richard C.
Sala-Newby, Graciela B.
Wu, Yih-Jer
Newby, Andrew C.
Bond, Mark
author_sort Hewer, Richard C.
collection PubMed
description Cyclic AMP signalling promotes VSMC quiescence in healthy vessels and during vascular healing following injury. Cyclic AMP inhibits VSMC proliferation via mechanisms that are not fully understood. We investigated the role of PKA and Epac signalling on cAMP-induced inhibition of VSMC proliferation. cAMP-mediated growth arrest was PKA-dependent. However, selective PKA activation with 6-Benzoyl-cAMP did not inhibit VSMC proliferation, indicating a requirement for additional pathways. Epac activation using the selective cAMP analogue 8-CPT-2′-O-Me-cAMP, did not affect levels of hyperphosphorylated Retinoblastoma (Rb) protein, a marker of G1-S phase transition, or BrdU incorporation, despite activation of the Epac-effector Rap1. However, 6-Benzoyl-cAMP and 8-CPT-2′-O-Me-cAMP acted synergistically to inhibit Rb-hyperphosphorylation and BrdU incorporation, indicating that both pathways are required for growth inhibition. Consistent with this, constitutively active Epac increased Rap1 activity and synergised with 6-Benzoyl-cAMP to inhibit VSMC proliferation. PKA and Epac synergised to inhibit phosphorylation of ERK and JNK. Induction of stellate morphology, previously associated with cAMP-mediated growth arrest, was also dependent on activation of both PKA and Epac. Rap1 inhibition with Rap1GAP or siRNA silencing did not negate forskolin-induced inhibition of Rb-hyperphosphorylation, BrdU incorporation or stellate morphology. This data demonstrates for the first time that Epac synergises with PKA via a Rap1-independent mechanism to mediate cAMP-induced growth arrest in VSMC. This work highlights the role of Epac as a major player in cAMP-dependent growth arrest in VSMC.
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spelling pubmed-30936162011-07-12 PKA and Epac synergistically inhibit smooth muscle cell proliferation Hewer, Richard C. Sala-Newby, Graciela B. Wu, Yih-Jer Newby, Andrew C. Bond, Mark J Mol Cell Cardiol Original Article Cyclic AMP signalling promotes VSMC quiescence in healthy vessels and during vascular healing following injury. Cyclic AMP inhibits VSMC proliferation via mechanisms that are not fully understood. We investigated the role of PKA and Epac signalling on cAMP-induced inhibition of VSMC proliferation. cAMP-mediated growth arrest was PKA-dependent. However, selective PKA activation with 6-Benzoyl-cAMP did not inhibit VSMC proliferation, indicating a requirement for additional pathways. Epac activation using the selective cAMP analogue 8-CPT-2′-O-Me-cAMP, did not affect levels of hyperphosphorylated Retinoblastoma (Rb) protein, a marker of G1-S phase transition, or BrdU incorporation, despite activation of the Epac-effector Rap1. However, 6-Benzoyl-cAMP and 8-CPT-2′-O-Me-cAMP acted synergistically to inhibit Rb-hyperphosphorylation and BrdU incorporation, indicating that both pathways are required for growth inhibition. Consistent with this, constitutively active Epac increased Rap1 activity and synergised with 6-Benzoyl-cAMP to inhibit VSMC proliferation. PKA and Epac synergised to inhibit phosphorylation of ERK and JNK. Induction of stellate morphology, previously associated with cAMP-mediated growth arrest, was also dependent on activation of both PKA and Epac. Rap1 inhibition with Rap1GAP or siRNA silencing did not negate forskolin-induced inhibition of Rb-hyperphosphorylation, BrdU incorporation or stellate morphology. This data demonstrates for the first time that Epac synergises with PKA via a Rap1-independent mechanism to mediate cAMP-induced growth arrest in VSMC. This work highlights the role of Epac as a major player in cAMP-dependent growth arrest in VSMC. Academic Press 2011-01 /pmc/articles/PMC3093616/ /pubmed/20971121 http://dx.doi.org/10.1016/j.yjmcc.2010.10.010 Text en © 2011 Elsevier Ltd. https://creativecommons.org/licenses/by-nc-nd/3.0/ Open Access under CC BY-NC-ND 3.0 (https://creativecommons.org/licenses/by-nc-nd/3.0/) license
spellingShingle Original Article
Hewer, Richard C.
Sala-Newby, Graciela B.
Wu, Yih-Jer
Newby, Andrew C.
Bond, Mark
PKA and Epac synergistically inhibit smooth muscle cell proliferation
title PKA and Epac synergistically inhibit smooth muscle cell proliferation
title_full PKA and Epac synergistically inhibit smooth muscle cell proliferation
title_fullStr PKA and Epac synergistically inhibit smooth muscle cell proliferation
title_full_unstemmed PKA and Epac synergistically inhibit smooth muscle cell proliferation
title_short PKA and Epac synergistically inhibit smooth muscle cell proliferation
title_sort pka and epac synergistically inhibit smooth muscle cell proliferation
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3093616/
https://www.ncbi.nlm.nih.gov/pubmed/20971121
http://dx.doi.org/10.1016/j.yjmcc.2010.10.010
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