Smooth Muscle Notch1 Mediates Neointimal Formation After Vascular Injury
- 26 May 2009
- journal article
- research article
- Published by Wolters Kluwer Health in Circulation
- Vol. 119 (20) , 2686-2692
- https://doi.org/10.1161/circulationaha.108.790485
Abstract
Background— Notch1 regulates binary cell fate determination and is critical for angiogenesis and cardiovascular development. However, the pathophysiological role of Notch1 in the postnatal period is not known. We hypothesize that Notch1 signaling in vascular smooth muscle cells (SMCs) may contribute to neointimal formation after vascular injury. Methods and Results— We performed carotid artery ligation in wild-type, control (SMC-specific Cre recombinase transgenic [smCre-Tg]), general Notch1 heterozygous deficient (N1 +/− ), SMC-specific Notch1 heterozygous deficient (smN1 +/− ), and general Notch3 homozygous deficient (N3 −/− ) mice. Compared with wild-type or control mice, N1 +/− and smN1 +/− mice showed a 70% decrease in neointimal formation after carotid artery ligation. However, neointimal formation was similar between wild-type and N3 −/− mice. Indeed, SMCs derived from explanted aortas of either N1 +/− - or smN1 +/− mice showed decreased chemotaxis and proliferation and increased apoptosis compared with control or N3 −/− mice. This correlated with decreased staining of proliferating cell nuclear antigen–positive cells and increased staining of cleaved caspase-3 in the intima of N1 +/− - or smN1 +/− mice. In SMCs derived from CHF1/Hey2 −/− mice, activation of Notch signaling did not lead to increased SMC proliferation or migration. Conclusions— These findings indicate that Notch1, rather than Notch3, mediates SMC proliferation and neointimal formation after vascular injury through CHF1/Hey2 and suggest that therapies that target Notch1/CHF1/Hey2 in SMCs may be beneficial in preventing vascular proliferative diseases.Keywords
This publication has 31 references indexed in Scilit:
- Decreased vascular lesion formation in mice with inducible endothelial-specific expression of protein kinase AktJournal of Clinical Investigation, 2006
- Notch Signaling Represses Myocardin-induced Smooth Muscle Cell DifferentiationJournal of Biological Chemistry, 2005
- Induction of Angiogenesis by Heat Shock Protein 90 Mediated by Protein Kinase Akt and Endothelial Nitric Oxide SynthaseArteriosclerosis, Thrombosis, and Vascular Biology, 2004
- Transcription Factor CHF1/Hey2 Regulates Neointimal Formation In Vivo and Vascular Smooth Muscle Proliferation and Migration In VitroArteriosclerosis, Thrombosis, and Vascular Biology, 2004
- Notch 1 and 3 receptors modulate vascular smooth muscle cell growth, apoptosis and migration via a CBF‐1/RBP‐Jk dependent pathwayThe FASEB Journal, 2004
- Coordinate Notch3-Hairy-related Transcription Factor Pathway Regulation in Response to Arterial InjuryJournal of Biological Chemistry, 2002
- Gridlock signalling pathway fashions the first embryonic arteryNature, 2001
- Members of the Jagged/Notch Gene Families Are Expressed in Injured Arteries and Regulate Cell Phenotype via Alterations in Cell Matrix and Cell-Cell InteractionThe American Journal of Pathology, 2001
- Notch Signaling: Cell Fate Control and Signal Integration in DevelopmentScience, 1999
- Notch3 mutations in CADASIL, a hereditary adult-onset condition causing stroke and dementiaNature, 1996