S'abonner

NGF induces pulmonary arterial hyperreactivity through Connexin 43 increased expression - 09/06/21

Doi : 10.1016/j.rmr.2021.02.029 
G. Cardouat 1, , M. Douard 1, L. Roubenne 1, C. Bouchet 1, Z. Kmecová 2, P. Robillard 1, C. Guignabert 3, L. Tu 3, F. Delcambre 4, R. Marthan 1, 4, B. Muller 1, C. Guibert 1, V. Freund-Michel 1
1 University Bordeaux, Inserm, Centre de recherche Cardio-Thoracique de Bordeaux, U1045, 33000 Bordeaux, France 
2 Département de Pharmacologie et de Toxicologie, Université Comenius, Bratislava, Slovaquie 
3 Faculté de Médecine, Université Paris-Sud, Université Paris-Saclay, Le Kremlin-Bicêtre, France 
4 CHU de Bordeaux, France 

Corresponding author.

Bienvenue sur EM-consulte, la référence des professionnels de santé.
Article gratuit.

Connectez-vous pour en bénéficier!

Résumé

Introduction

Nerve growth factor (NGF) plays a critical role in pathophysiology of pulmonary hypertension (PH) by promoting pulmonary arterial (PA) inflammation, remodelling and hyperreactivity.

Aim

To determine the mechanisms of NGF-induced PA hyperreactivity, focusing on Connexin 43 (Cx43), a gap junction protein essential for vascular reactivity.

Methods

Expression of NGF, its TrkA receptor and Cx43 were evaluated by Western blotting in human PA smooth muscle cells (hPASMC) from control donors or from patients suffering from idiopathic pulmonary arterial hypertension (iPAH). Cx43 expression and localisation were evaluated by Western blotting, immunofluorescence and surface biotinylation, after NGF treatment. Gap junction activity was assessed by FRAP microscopy. Contractions of rat PA were induced by phenylephrine (PHE), with or without NGF pre-treatment. The role of Cx43 in NGF-induced rat PA hyperreactivity was evaluated ex vivo by use of 43Gap26, a Cx43 blocking peptide, or in vivo by use of an anti-Cx43 siRNA.

Results

TrkA expression was increased in hPASMC from iPAH patients compared to control hPASMC. NGF increased Cx43 expression, plasma membrane localisation and phosphorylation, with a higher sensitivity in iPAH cells compared to controls. In both cell types, this increase was abolished with K252a, a TrkA kinase inhibitor. Activity of Cx43-dependent GAP junctions was also increased after NGF treatment, with iPAH hPASMC being more sensitive to NGF than control cells. NGF-induced PA hyperreactivity to PHE was inhibited after treatment with 43Gap26 or with anti-Cx43 siRNA.

Conclusion

NGF, through activation of its TrkA receptor, increases Cx43 expression and plasma membrane localisation in hPASMC. This mechanism enhances Cx43-dependent GAP junction activity and contributes to PA hyperreactivity. Moreover, NGF pathway is upregulated in iPAH hPASMC compared to control hPASMC, and iPAH cells are more sensitive to NGF than control cells regarding Cx43 increased expression and Cx43-dependent GAP junction increased activity.

Le texte complet de cet article est disponible en PDF.

Keyword : Circulation


Plan


© 2021  Publié par Elsevier Masson SAS.
Imprimer
Export

    Export citations

  • Fichier

  • Contenu

Vol 38 - N° 6

P. 582 - juin 2021 Retour au numéro
Article précédent Article précédent
  • Régulation épigénétique de la dysfonction endothéliale dans la maladie veineuse thromboembolique
  • M. Pilard, S. Robin, F. Couturaud, C.A. Lemarie
| Article suivant Article suivant
  • ATT has positive effects on pulmonary hypertension hallmarks
  • L. Roubenne, A. Boucard, R. Marthan, F. Delcambre, B. Le Grand, C. Guibert