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PMID: 15256398 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

B-Myb represses vascular smooth muscle cell collagen gene expression and inhibits neointima formation after arterial injury.

Arteriosclerosis, thrombosis, and vascular biology ·Vol. 24 ·No. 9 ·2004-09-00 ·Pages 1608-13

Hofmann CS, Sullivan CP, Jiang HY, Stone PJ, Toselli P, Reis ED, Chereshnev I, Schreiber BM, Sonenshein GE

Abstract

The function of B-Myb, a negative regulator of vascular smooth muscle cell (SMC) matrix gene transcription, was analyzed in the vasculature. Mice were generated in which the human B-myb gene was driven by the basal cytomegalovirus promoter, and 3 founders were identified. Mice appeared to develop normally, and human B-myb was expressed in the aortas. Total B-Myb levels were elevated in aortas of adult transgenic versus wild-type (WT) animals and varied inversely with alpha1(I) collagen mRNA expression. However, neonatal WT and transgenic aortas displayed comparable levels of alpha1(I) collagen mRNA, likely resulting from elevated levels of cyclin A, which ablated repression by B-Myb. Aortic SMCs from adult transgenic animals displayed decreased alpha1(I) collagen mRNA levels. To examine the role of B-Myb after vascular injury, animals were subjected to femoral artery denudation, which induces SMC-rich lesion formation. A dramatic reduction in neointima formation and lumenal narrowing was observed in arteries of B-myb transgenic versus WT mice 4 weeks after injury. Data indicate that B-Myb, which inhibits matrix gene expression in the adult vessel wall, reduces neointima formation after vascular injury. To analyze B-Myb function in the vasculature, mice overexpressing B-myb were generated. Neonates displayed normal alpha1(I) collagen mRNA levels, whereas adults expressed decreased collagen mRNA in aortas and isolated vascular SMCs. On femoral artery denudation, neointima formation was dramatically reduced in B-myb transgenic mice.

MeSH Terms
Age Factors Animals Animals, Newborn Aorta/metabolism Cell Cycle Proteins/biosynthesis,genetics,physiology Collagen/biosynthesis,genetics Cyclin A/biosynthesis,genetics Cytomegalovirus/genetics DNA-Binding Proteins/biosynthesis,genetics,physiology Female Femoral Artery/injuries,metabolism,pathology Gene Expression Regulation Humans Male Mice Mice, Transgenic Muscle, Smooth, Vascular/metabolism,pathology Myocytes, Smooth Muscle/metabolism,pathology Promoter Regions, Genetic RNA, Messenger/biosynthesis Trans-Activators/biosynthesis,genetics,physiology Transgenes Tunica Intima/pathology
Chemicals
Cell Cycle Proteins Cyclin A DNA-Binding Proteins MYBL2 protein, human Mybl2 protein, mouse RNA, Messenger Trans-Activators Collagen
Authors & Affiliations
9 authors, click to expand affiliations / ORCID
Hofmann Claudia S
Department of Biochemistry, Boston University School of Medicine, 715 Albany St, Boston, MA 02118, USA.
Sullivan Christopher P
Jiang Hao-Yuan
Stone Phillip J
Toselli Paul
Reis Ernane D
Chereshnev Igor
Schreiber Barbara M
Sonenshein Gail E
Article Info
Journal
Arteriosclerosis, thrombosis, and vascular biology
Abbr.
Arterioscler Thromb Vasc Biol
ISSN
1524-4636
Published
2004-09-00
Epub
2004-00-15
Pages
1608-13
Language
English
Region
United States
NLM ID
9505803
Subset
IM
Grants
NHLBI NIH HHS · P01 HL13262 · United States
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