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Published on: May 19, 2016
K-ras regulates the steady-state expression of matrix metalloproteinase 2 in fibroblasts
Jinhui Liao1, Janice C Wolfman, Alan Wolfman
1Department of Cell Biology, Cleveland Clinic Lerner College of Medicine, Cleveland, Ohio 44195, USA.
Abstract:
Fibroblasts constitutively express matrix metalloproteinase 2 (MMP-2), which specifically cleaves type IV collagen, a major structural component of basement membranes. The level of MMP-2 expression was not altered by serum withdrawal, suggesting that MMP-2 expression is regulated by a series of steady-state conditions that impinge on the MMP-2 promoter. Expression of a dominant-negative Ras protein significantly inhibited MMP-2 transcription, thereby suggesting a role for steady-state Ras function in the regulation of MMP-2 expression. Kirsten-Ras (K-Ras) knockout fibroblasts express undetectable basal levels of MMP-2, whereas N-Ras knockout fibroblasts expressed constitutive levels of MMP-2 similar to those observed in wild-type control fibroblasts. Using an MMP-2 promoter-luciferase reporter assay, we demonstrated that the transcription of MMP-2 in K-Ras knockout fibroblasts was partially restored by transient expression of c-K(B)-Ras but not c-K(A)-Ras. A phosphoinositide-3 (PI-3) kinase-specific inhibitor (LY294002) decreased the basal level of MMP-2 in wild-type fibroblasts. Blocking PI-3 kinase signaling by overexpression of the regulatory domain of PI-3 kinase (p85) also down-regulated the steady-state MMP-2 levels. Fibroblasts that fail to express AKT1 also expressed decreased amounts of MMP-2 compared with wild-type fibroblasts. These data suggest that steady-state MMP-2 expression is regulated by c-K(B)-Ras through a PI-3 kinase:AKT-dependent signaling pathway. Because the majority of the MMP-2 assays were performed using conditioned media from serum-starved fibroblasts, these data also highlight our previous observations that Ras proteins have functions in the absence of acute mitogenic stimulations. In addition, this is the first demonstration of a specific steady-state function attributable to K(B)-Ras.
Insights
Matrix metalloproteinase 2 (MMP-2) expression in fibroblasts is regulated by Kirsten-Ras (K-Ras) via a phosphoinositide-3 (PI-3) kinase and AKT signaling pathway. This study reveals a steady-state function for K-Ras in MMP-2 regulation.
Area of Science:
- Molecular Biology
- Cell Signaling
- Biochemistry
Background:
- Fibroblasts constitutively express matrix metalloproteinase 2 (MMP-2), crucial for cleaving type IV collagen in basement membranes.
- MMP-2 expression is maintained under steady-state conditions, independent of serum levels, suggesting promoter-level regulation.
- Ras proteins are implicated in cellular signaling, but their role in basal MMP-2 expression requires elucidation.
Purpose of the Study:
- To investigate the role of Ras proteins, specifically Kirsten-Ras (K-Ras), in the constitutive expression of MMP-2 in fibroblasts.
- To identify the signaling pathways downstream of Ras that regulate MMP-2 transcription.
- To demonstrate a specific steady-state function for K-Ras in MMP-2 regulation.
Main Methods:
- Utilized K-Ras and N-Ras knockout fibroblasts to assess basal MMP-2 levels.
- Employed a MMP-2 promoter-luciferase reporter assay to measure transcriptional activity.
- Investigated the effects of phosphoinositide-3 (PI-3) kinase inhibitors and AKT1 expression on MMP-2 levels.
Main Results:
- K-Ras knockout fibroblasts exhibited undetectable basal MMP-2 levels, unlike N-Ras knockout fibroblasts.
- Expression of c-K(B)-Ras, but not c-K(A)-Ras, partially restored MMP-2 transcription in K-Ras knockout cells.
- Inhibition of PI-3 kinase or AKT1 signaling significantly decreased MMP-2 expression in wild-type fibroblasts.
Conclusions:
- Steady-state MMP-2 expression is primarily regulated by c-K(B)-Ras through a PI-3 kinase:AKT-dependent signaling pathway.
- Ras proteins exert functions in the absence of acute mitogenic stimulation, maintaining basal MMP-2 levels.
- This study provides the first evidence of a specific steady-state function for K(B)-Ras in regulating MMP-2.
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