Matrix metalloproteinase-9 activates TGF-β and stimulates fibroblast contraction of collagen gels

Author:

Kobayashi Tetsu1,Kim HuiJung2,Liu Xiangde3,Sugiura Hisatoshi4,Kohyama Tadashi5,Fang Qiuhong6,Wen Fu-Qiang7,Abe Shinji8,Wang Xingqi9,Atkinson Jeffrey J.10,Shipley James M.10,Senior Robert M.10,Rennard Stephen I.3

Affiliation:

1. Mie University of Graduate School of Medicine, Tsu, Japan;

2. WonKwang University Sanbon Medical Center, Seoul, Korea;

3. University of Nebraska Medical Center, Omaha, Nebraska;

4. Tohoku University Graduate School of Medicine, Sendai, Japan;

5. Teikyo University School of Medicine, Kawasaki, Japan;

6. Department of Pulmonary and Critical Care, Beijing Shijitan Hospital, Capital Medical University, Beijing, China;

7. West China School of Medicine, Sichuan, China;

8. Nippon Medical School, Tokyo, Japan;

9. Affiliated Hospital of Hebei United University, Hebei Province, China;

10. Washington University School of Medicine, St. Louis, Missouri

Abstract

Matrix metalloproteinase-9 (MMP-9) is a matrix-degrading enzyme implicated in many biological processes, including inflammation. It is produced by many cells, including fibroblasts. When cultured in three-dimensional (3D) collagen gels, fibroblasts contract the surrounding matrix, a function that is thought to model the contraction that characterizes both normal wound repair and fibrosis. The current study was designed to evaluate the role of endogenously produced MMP-9 in fibroblast contraction of 3D collagen gels. Fibroblasts from mice lacking expression of MMP-9 and human lung fibroblasts (HFL-1) transfected with MMP-9 small-interfering RNA (siRNA) were used. Fibroblasts were cast into type I collagen gels and floated in culture medium with or without transforming growth factor (TGF)-β1 for 5 days. Gel size was determined daily using an image analysis system. Gels made from MMP-9 siRNA-treated human fibroblasts contracted less than control fibroblasts, as did fibroblasts incubated with a nonspecific MMP inhibitor. Similarly, fibroblasts cultured from MMP-9-deficient mice contracted gels less than did fibroblasts from control mice. Transfection of the MMP-9-deficient murine fibroblasts with a vector expressing murine MMP-9 restored contractile activity to MMP-9-deficient fibroblasts. Inhibition of MMP-9 reduced active TGF-β1 and reduced several TGF-β1-driven responses, including activity of a Smad3 reporter gene and production of fibronectin. Because TGF-β1 also drives fibroblast gel contraction, this suggests the mechanism for MMP-9 regulation of contraction is through the generation of active TGF-β1. This study provides direct evidence that endogenously produced MMP-9 has a role in regulation of tissue contraction of 3D collagen gels mediated by fibroblasts.

Publisher

American Physiological Society

Subject

Cell Biology,Physiology (medical),Pulmonary and Respiratory Medicine,Physiology

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