Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.

The phosphoinositide-specific phospholipase C, PLCε, is a unique signaling protein with known roles in regulating cardiac myocyte growth, astrocyte inflammatory signaling, and tumor formation. PLCε is also expressed in endothelial cells, however its role in endothelial regulation is not fully establ...

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Main Authors: Peter V DiStefano, Alan V Smrcka, Angela J Glading
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2016-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5017709?pdf=render
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author Peter V DiStefano
Alan V Smrcka
Angela J Glading
author_facet Peter V DiStefano
Alan V Smrcka
Angela J Glading
author_sort Peter V DiStefano
collection DOAJ
description The phosphoinositide-specific phospholipase C, PLCε, is a unique signaling protein with known roles in regulating cardiac myocyte growth, astrocyte inflammatory signaling, and tumor formation. PLCε is also expressed in endothelial cells, however its role in endothelial regulation is not fully established. We show that endothelial cells of multiple origins, including human pulmonary artery (HPAEC), human umbilical vein (HUVEC), and immortalized brain microvascular (hCMEC/D3) endothelial cells, express PLCε. Knockdown of PLCε in arterial endothelial monolayers decreased the effectiveness of the endothelial barrier. Concomitantly, RhoA activity and stress fiber formation were increased. PLCε-deficient arterial endothelial cells also exhibited decreased Rap1-GTP levels, which could be restored by activation of the Rap1 GEF, Epac, to rescue the increase in monolayer leak. Reintroduction of PLCε rescued monolayer leak with both the CDC25 GEF domain and the lipase domain of PLCε required to fully activate Rap1 and to rescue endothelial barrier function. Finally, we demonstrate that the barrier promoting effects PLCε are dependent on Rap1 signaling through the Rap1 effector, KRIT1, which we have previously shown is vital for maintaining endothelial barrier stability. Thus we have described a novel role for PLCε PIP2 hydrolytic and Rap GEF activities in arterial endothelial cells, where PLCε-dependent activation of Rap1/KRIT1 signaling promotes endothelial barrier stability.
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spelling doaj.art-d9ef0ba422754e9dbade798d6cff4b292022-12-21T22:24:19ZengPublic Library of Science (PLoS)PLoS ONE1932-62032016-01-01119e016233810.1371/journal.pone.0162338Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.Peter V DiStefanoAlan V SmrckaAngela J GladingThe phosphoinositide-specific phospholipase C, PLCε, is a unique signaling protein with known roles in regulating cardiac myocyte growth, astrocyte inflammatory signaling, and tumor formation. PLCε is also expressed in endothelial cells, however its role in endothelial regulation is not fully established. We show that endothelial cells of multiple origins, including human pulmonary artery (HPAEC), human umbilical vein (HUVEC), and immortalized brain microvascular (hCMEC/D3) endothelial cells, express PLCε. Knockdown of PLCε in arterial endothelial monolayers decreased the effectiveness of the endothelial barrier. Concomitantly, RhoA activity and stress fiber formation were increased. PLCε-deficient arterial endothelial cells also exhibited decreased Rap1-GTP levels, which could be restored by activation of the Rap1 GEF, Epac, to rescue the increase in monolayer leak. Reintroduction of PLCε rescued monolayer leak with both the CDC25 GEF domain and the lipase domain of PLCε required to fully activate Rap1 and to rescue endothelial barrier function. Finally, we demonstrate that the barrier promoting effects PLCε are dependent on Rap1 signaling through the Rap1 effector, KRIT1, which we have previously shown is vital for maintaining endothelial barrier stability. Thus we have described a novel role for PLCε PIP2 hydrolytic and Rap GEF activities in arterial endothelial cells, where PLCε-dependent activation of Rap1/KRIT1 signaling promotes endothelial barrier stability.http://europepmc.org/articles/PMC5017709?pdf=render
spellingShingle Peter V DiStefano
Alan V Smrcka
Angela J Glading
Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
PLoS ONE
title Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
title_full Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
title_fullStr Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
title_full_unstemmed Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
title_short Phospholipase Cε Modulates Rap1 Activity and the Endothelial Barrier.
title_sort phospholipase cε modulates rap1 activity and the endothelial barrier
url http://europepmc.org/articles/PMC5017709?pdf=render
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