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MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions

Although the genetic basis of mitral valve prolapse (MVP) has now been clearly established, the molecular and cellular mechanisms involved in the pathological processes associated to a specific mutation often remain to be determined. The FLNA gene (encoding Filamin A; FlnA) was the first gene associ...

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Autores principales: Duval, Damien, Labbé, Pauline, Bureau, Léa, Le Tourneau, Thierry, Norris, Russell A., Markwald, Roger R., Levine, Robert, Schott, Jean-Jacques, Mérot, Jean
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654411/
https://www.ncbi.nlm.nih.gov/pubmed/26594644
http://dx.doi.org/10.3390/jcdd2030233
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author Duval, Damien
Labbé, Pauline
Bureau, Léa
Le Tourneau, Thierry
Norris, Russell A.
Markwald, Roger R.
Levine, Robert
Schott, Jean-Jacques
Mérot, Jean
author_facet Duval, Damien
Labbé, Pauline
Bureau, Léa
Le Tourneau, Thierry
Norris, Russell A.
Markwald, Roger R.
Levine, Robert
Schott, Jean-Jacques
Mérot, Jean
author_sort Duval, Damien
collection PubMed
description Although the genetic basis of mitral valve prolapse (MVP) has now been clearly established, the molecular and cellular mechanisms involved in the pathological processes associated to a specific mutation often remain to be determined. The FLNA gene (encoding Filamin A; FlnA) was the first gene associated to non-syndromic X-linked myxomatous valvular dystrophy, but the impacts of the mutations on its function remain un-elucidated. Here, using the first repeats (1–8) of FlnA as a bait in a yeast two-hybrid screen, we identified the tyrosine phosphatase PTPN12 (PTP-PEST) as a specific binding partner of this region of FlnA protein. In addition, using yeast two-hybrid trap assay pull down and co-immunoprecipitation experiments, we showed that the MVP-associated FlnA mutations (G288R, P637Q, H743P) abolished FlnA/PTPN12 interactions. PTPN12 is a key regulator of signaling pathways involved in cell-extracellular matrix (ECM) crosstalk, cellular responses to mechanical stress that involve integrins, focal adhesion transduction pathways, and actin cytoskeleton dynamics. Interestingly, we showed that the FlnA mutations impair the activation status of two PTPN12 substrates, the focal adhesion associated kinase Src, and the RhoA specific activating protein p190RhoGAP. Together, these data point to PTPN12/FlnA interaction and its weakening by FlnA mutations as a mechanism potentially involved in the physiopathology of FlnA-associated MVP.
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spelling pubmed-46544112015-11-20 MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions Duval, Damien Labbé, Pauline Bureau, Léa Le Tourneau, Thierry Norris, Russell A. Markwald, Roger R. Levine, Robert Schott, Jean-Jacques Mérot, Jean J Cardiovasc Dev Dis Article Although the genetic basis of mitral valve prolapse (MVP) has now been clearly established, the molecular and cellular mechanisms involved in the pathological processes associated to a specific mutation often remain to be determined. The FLNA gene (encoding Filamin A; FlnA) was the first gene associated to non-syndromic X-linked myxomatous valvular dystrophy, but the impacts of the mutations on its function remain un-elucidated. Here, using the first repeats (1–8) of FlnA as a bait in a yeast two-hybrid screen, we identified the tyrosine phosphatase PTPN12 (PTP-PEST) as a specific binding partner of this region of FlnA protein. In addition, using yeast two-hybrid trap assay pull down and co-immunoprecipitation experiments, we showed that the MVP-associated FlnA mutations (G288R, P637Q, H743P) abolished FlnA/PTPN12 interactions. PTPN12 is a key regulator of signaling pathways involved in cell-extracellular matrix (ECM) crosstalk, cellular responses to mechanical stress that involve integrins, focal adhesion transduction pathways, and actin cytoskeleton dynamics. Interestingly, we showed that the FlnA mutations impair the activation status of two PTPN12 substrates, the focal adhesion associated kinase Src, and the RhoA specific activating protein p190RhoGAP. Together, these data point to PTPN12/FlnA interaction and its weakening by FlnA mutations as a mechanism potentially involved in the physiopathology of FlnA-associated MVP. MDPI 2015-09-08 /pmc/articles/PMC4654411/ /pubmed/26594644 http://dx.doi.org/10.3390/jcdd2030233 Text en © 2015 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Duval, Damien
Labbé, Pauline
Bureau, Léa
Le Tourneau, Thierry
Norris, Russell A.
Markwald, Roger R.
Levine, Robert
Schott, Jean-Jacques
Mérot, Jean
MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title_full MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title_fullStr MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title_full_unstemmed MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title_short MVP-Associated Filamin A Mutations Affect FlnA-PTPN12 (PTP-PEST) Interactions
title_sort mvp-associated filamin a mutations affect flna-ptpn12 (ptp-pest) interactions
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4654411/
https://www.ncbi.nlm.nih.gov/pubmed/26594644
http://dx.doi.org/10.3390/jcdd2030233
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