Essential Role for Smad3 in Regulating MCP-1 Expression and Vascular Inflammation

Author:

Feinberg Mark W.1,Shimizu Koichi1,Lebedeva Maria1,Haspel Richard1,Takayama Kiyoshi1,Chen Zhiping1,Frederick Joshua P.1,Wang Xiao-Fan1,Simon Daniel I.1,Libby Peter1,Mitchell Richard N.1,Jain Mukesh K.1

Affiliation:

1. From the Division of Cardiovascular Medicine (M.W.F., K.S., M.L., K.T., Z.C., D.I.S., P.L., M.K.J.) and Department of Pathology (R.H., R.N.M.), Brigham and Women’s Hospital, Boston, Mass; Duke University (J.P.F., X.-F.W.), Durham, NC.

Abstract

Transforming growth factor (TGF)-β 1 is a pleiotropic growth factor with known inhibitory effects on immune cell activation. However, the specific mechanism(s) and in vivo significance of the effectors of TGF-β 1 modulation in the context of vascular inflammation are not well characterized. The chemokine monocyte chemoattractant protein (MCP)-1 is critical for the recruitment of macrophages in inflammatory disease states. In this study, we provide definitive evidence that the ability of TGF-β 1 to inhibit MCP-1 expression is mediated via its effector Smad3. Adenoviral overexpression of Smad3 potently repressed inducible expression of endogenous MCP-1. Conversely, TGF-β 1 inhibition of cytokine-mediated induction of MCP-1 expression was completely blocked in Smad3-deficient macrophages. Consistent with this impaired response, cardiac allografts in Smad3-deficient mice developed accelerated intimal hyperplasia with increased infiltration of adventitial macrophages expressing MCP-1. Previous studies show that MCP-1 inducibility is regulated by an AP-1 complex composed of c-Jun/c-Fos heterodimers. We demonstrate that the inhibitory effect of Smad3 occurs via a novel antagonistic effect of Smad3 on AP-1 DNA-protein binding and activity. Thus, Smad3 plays an essential role in modulating vascular inflammation characteristic of transplant-associated arteriopathy, is important in regulating MCP-1 expression, and plays a critical role in the ability of TGF-β 1 to repress stimuli from a major inflammatory signaling pathway.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine,Physiology

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