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MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions

Integrins are essential protagonists of the complex multi-step process of angiogenesis that has now become a major target for the development of anticancer therapies. We recently reported and characterized that MVL-PLA2, a novel phospholipase A2 from Macrovipera lebetina venom, exhibited anti-integr...

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Autores principales: Bazaa, Amine, Pasquier, Eddy, Defilles, Céline, Limam, Ines, Kessentini-Zouari, Raoudha, Kallech-Ziri, Olfa, Battari, Assou El, Braguer, Diane, Ayeb, Mohamed El, Marrakchi, Naziha, Luis, José
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2853567/
https://www.ncbi.nlm.nih.gov/pubmed/20405031
http://dx.doi.org/10.1371/journal.pone.0010124
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author Bazaa, Amine
Pasquier, Eddy
Defilles, Céline
Limam, Ines
Kessentini-Zouari, Raoudha
Kallech-Ziri, Olfa
Battari, Assou El
Braguer, Diane
Ayeb, Mohamed El
Marrakchi, Naziha
Luis, José
author_facet Bazaa, Amine
Pasquier, Eddy
Defilles, Céline
Limam, Ines
Kessentini-Zouari, Raoudha
Kallech-Ziri, Olfa
Battari, Assou El
Braguer, Diane
Ayeb, Mohamed El
Marrakchi, Naziha
Luis, José
author_sort Bazaa, Amine
collection PubMed
description Integrins are essential protagonists of the complex multi-step process of angiogenesis that has now become a major target for the development of anticancer therapies. We recently reported and characterized that MVL-PLA2, a novel phospholipase A2 from Macrovipera lebetina venom, exhibited anti-integrin activity. In this study, we show that MVL-PLA2 also displays potent anti-angiogenic properties. This phospholipase A2 inhibited adhesion and migration of human microvascular-endothelial cells (HMEC-1) in a dose-dependent manner without being cytotoxic. Using Matrigel™ and chick chorioallantoic membrane assays, we demonstrated that MVL-PLA2, as well as its catalytically inactivated form, significantly inhibited angiogenesis both in vitro and in vivo. We have also found that the actin cytoskeleton and the distribution of αvβ3 integrin, a critical regulator of angiogenesis and a major component of focal adhesions, were disturbed after MVL-PLA2 treatment. In order to further investigate the mechanism of action of this protein on endothelial cells, we analyzed the dynamic instability behavior of microtubules in living endothelial cells. Interestingly, we showed that MVL-PLA2 significantly increased microtubule dynamicity in HMEC-1 cells by 40%. We propose that the enhancement of microtubule dynamics may explain the alterations in the formation of focal adhesions, leading to inhibition of cell adhesion and migration.
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spelling pubmed-28535672010-04-19 MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions Bazaa, Amine Pasquier, Eddy Defilles, Céline Limam, Ines Kessentini-Zouari, Raoudha Kallech-Ziri, Olfa Battari, Assou El Braguer, Diane Ayeb, Mohamed El Marrakchi, Naziha Luis, José PLoS One Research Article Integrins are essential protagonists of the complex multi-step process of angiogenesis that has now become a major target for the development of anticancer therapies. We recently reported and characterized that MVL-PLA2, a novel phospholipase A2 from Macrovipera lebetina venom, exhibited anti-integrin activity. In this study, we show that MVL-PLA2 also displays potent anti-angiogenic properties. This phospholipase A2 inhibited adhesion and migration of human microvascular-endothelial cells (HMEC-1) in a dose-dependent manner without being cytotoxic. Using Matrigel™ and chick chorioallantoic membrane assays, we demonstrated that MVL-PLA2, as well as its catalytically inactivated form, significantly inhibited angiogenesis both in vitro and in vivo. We have also found that the actin cytoskeleton and the distribution of αvβ3 integrin, a critical regulator of angiogenesis and a major component of focal adhesions, were disturbed after MVL-PLA2 treatment. In order to further investigate the mechanism of action of this protein on endothelial cells, we analyzed the dynamic instability behavior of microtubules in living endothelial cells. Interestingly, we showed that MVL-PLA2 significantly increased microtubule dynamicity in HMEC-1 cells by 40%. We propose that the enhancement of microtubule dynamics may explain the alterations in the formation of focal adhesions, leading to inhibition of cell adhesion and migration. Public Library of Science 2010-04-12 /pmc/articles/PMC2853567/ /pubmed/20405031 http://dx.doi.org/10.1371/journal.pone.0010124 Text en Bazaa 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
Bazaa, Amine
Pasquier, Eddy
Defilles, Céline
Limam, Ines
Kessentini-Zouari, Raoudha
Kallech-Ziri, Olfa
Battari, Assou El
Braguer, Diane
Ayeb, Mohamed El
Marrakchi, Naziha
Luis, José
MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title_full MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title_fullStr MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title_full_unstemmed MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title_short MVL-PLA2, a Snake Venom Phospholipase A2, Inhibits Angiogenesis through an Increase in Microtubule Dynamics and Disorganization of Focal Adhesions
title_sort mvl-pla2, a snake venom phospholipase a2, inhibits angiogenesis through an increase in microtubule dynamics and disorganization of focal adhesions
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2853567/
https://www.ncbi.nlm.nih.gov/pubmed/20405031
http://dx.doi.org/10.1371/journal.pone.0010124
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