Inactivation of Serum Response Factor Contributes To Decrease Vascular Muscular Tone and Arterial Stiffness in Mice

Author:

Galmiche Guillaume1,Labat Carlos1,Mericskay Mathias1,Aissa Karima Ait1,Blanc Jocelyne1,Retailleau Kevin1,Bourhim Mustapha1,Coletti Dario1,Loufrani Laurent1,Gao-Li Jacqueline1,Feil Robert1,Challande Pascal1,Henrion Daniel1,Decaux Jean-François1,Regnault Véronique1,Lacolley Patrick1,Li Zhenlin1

Affiliation:

1. From the UPMC Univ Paris 6, Paris, France (G.G., M.M., J.B., D.C., J.G.-L., Z.L.); INSERM-U872, Paris, France (G.G.); INSERM-U1116, Université de Lorraine, Vandoeuvre, France (C.L., K.A.A., M.B., V.R., P.L.); CNRS, UMR6214, INSERM, U771, Angers, France (K.R., L.L., D.H.); Interfakultäres Institut für Biochemie, Universität Tübingen, Tübingen, Germany (R.F.); UPMC Univ Paris 6, CNRS UMR 7190, Paris, France (P.C.); and Université Paris Descartes, CNRS UMR 8104, INSERM U1016, Paris, France (J.-F.D.).

Abstract

Rationale: Vascular smooth muscle (SM) cell phenotypic modulation plays an important role in arterial stiffening associated with aging. Serum response factor (SRF) is a major transcription factor regulating SM genes involved in maintenance of the contractile state of vascular SM cells. Objective: We investigated whether SRF and its target genes regulate intrinsic SM tone and thereby arterial stiffness. Methods and Results: The SRF gene was inactivated SM-specific knockout of SRF (SRF SMKO ) specifically in vascular SM cells by injection of tamoxifen into adult transgenic mice. Fifteen days later, arterial pressure and carotid thickness were lower in SRF SMKO than in control mice. The carotid distensibility/pressure and elastic modulus/wall stress curves showed a greater arterial elasticity in SRF SMKO without modification in collagen/elastin ratio. In SRF SMKO , vasodilation was decreased in aorta and carotid arteries, whereas a decrease in contractile response was found in mesenteric arteries. By contrast, in mice with inducible SRF overexpression, the in vitro contractile response was significantly increased in all arteries. Without endothelium, the contraction was reduced in SRF SMKO compared with control aortic rings owing to impairment of the NO pathway. Contractile components (SM-actin and myosin light chain), regulators of the contractile response (myosin light chain kinase, myosin phosphatase target subunit 1, and protein kinase C–potentiated myosin phosphatase inhibitor) and integrins were reduced in SRF SMKO . Conclusions: SRF controls vasoconstriction in mesenteric arteries via vascular SM cell phenotypic modulation linked to changes in contractile protein gene expression. SRF-related decreases in vasomotor tone and cell-matrix attachment increase arterial elasticity in large arteries.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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