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Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development

Protein Kinase C delta and epsilon are mediators of important cellular events, such as cell proliferation, migration or apoptosis. The formation of blood vessels, i.e., vasculo- and angiogenesis, is a process where these isoforms have also been shown to participate. However, mice deficient in either...

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Autores principales: Carracedo, Sergio, Sacher, Frank, Brandes, Gudrun, Braun, Ursula, Leitges, Michael
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4118884/
https://www.ncbi.nlm.nih.gov/pubmed/25084151
http://dx.doi.org/10.1371/journal.pone.0103686
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author Carracedo, Sergio
Sacher, Frank
Brandes, Gudrun
Braun, Ursula
Leitges, Michael
author_facet Carracedo, Sergio
Sacher, Frank
Brandes, Gudrun
Braun, Ursula
Leitges, Michael
author_sort Carracedo, Sergio
collection PubMed
description Protein Kinase C delta and epsilon are mediators of important cellular events, such as cell proliferation, migration or apoptosis. The formation of blood vessels, i.e., vasculo- and angiogenesis, is a process where these isoforms have also been shown to participate. However, mice deficient in either Protein Kinase C delta or epsilon are viable and therefore their individual contribution to the formation of the vasculature appeared so far dispensable. In this study, we show that double null mutation of Protein Kinase C delta and epsilon causes embryonic lethality at approximately E9.5. At this stage, whole mount staining of the endothelial marker CD31 in double null embryos revealed defective blood vessel formation. Moreover, culture of double deficient mouse allantois showed impaired endothelial cell organization, and analyses of double deficient embryo sections showed dilated vessels, decreased endothelial-specific adherent junctions, and decreased contact of endothelial cells with mural cells. Protein kinase C delta and epsilon also appeared essential for vascular smooth muscle cell differentiation, since α-smooth muscle actin, a classical marker for vascular smooth muscle cells, was almost undetectable in double deficient embryonic aorta at E9.5. Subsequent qPCR analyses showed decreased VE-cadherin, Vegfr2, Cd31, Cdh2, Ets1, and Fli-1, among other angiogenesis related transcripts in double deficient embryos. Taken together, these data suggest for the first time an in vivo redundant role between members of the novel Protein Kinase C subfamily that allows for mutual compensation during mouse embryonic development, with vasculogenesis/angiogenesis as an obvious common function of these two Protein Kinase Cs. Protein Kinase C delta and epsilon might therefore be useful targets for inhibiting vasculo- and/or angiogenesis.
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spelling pubmed-41188842014-08-04 Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development Carracedo, Sergio Sacher, Frank Brandes, Gudrun Braun, Ursula Leitges, Michael PLoS One Research Article Protein Kinase C delta and epsilon are mediators of important cellular events, such as cell proliferation, migration or apoptosis. The formation of blood vessels, i.e., vasculo- and angiogenesis, is a process where these isoforms have also been shown to participate. However, mice deficient in either Protein Kinase C delta or epsilon are viable and therefore their individual contribution to the formation of the vasculature appeared so far dispensable. In this study, we show that double null mutation of Protein Kinase C delta and epsilon causes embryonic lethality at approximately E9.5. At this stage, whole mount staining of the endothelial marker CD31 in double null embryos revealed defective blood vessel formation. Moreover, culture of double deficient mouse allantois showed impaired endothelial cell organization, and analyses of double deficient embryo sections showed dilated vessels, decreased endothelial-specific adherent junctions, and decreased contact of endothelial cells with mural cells. Protein kinase C delta and epsilon also appeared essential for vascular smooth muscle cell differentiation, since α-smooth muscle actin, a classical marker for vascular smooth muscle cells, was almost undetectable in double deficient embryonic aorta at E9.5. Subsequent qPCR analyses showed decreased VE-cadherin, Vegfr2, Cd31, Cdh2, Ets1, and Fli-1, among other angiogenesis related transcripts in double deficient embryos. Taken together, these data suggest for the first time an in vivo redundant role between members of the novel Protein Kinase C subfamily that allows for mutual compensation during mouse embryonic development, with vasculogenesis/angiogenesis as an obvious common function of these two Protein Kinase Cs. Protein Kinase C delta and epsilon might therefore be useful targets for inhibiting vasculo- and/or angiogenesis. Public Library of Science 2014-08-01 /pmc/articles/PMC4118884/ /pubmed/25084151 http://dx.doi.org/10.1371/journal.pone.0103686 Text en © 2014 Carracedo et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Carracedo, Sergio
Sacher, Frank
Brandes, Gudrun
Braun, Ursula
Leitges, Michael
Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title_full Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title_fullStr Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title_full_unstemmed Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title_short Redundant Role of Protein Kinase C Delta and Epsilon during Mouse Embryonic Development
title_sort redundant role of protein kinase c delta and epsilon during mouse embryonic development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4118884/
https://www.ncbi.nlm.nih.gov/pubmed/25084151
http://dx.doi.org/10.1371/journal.pone.0103686
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