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Oncostatin M is a mitogen for rabbit vascular smooth muscle cells
R I Grove1, C Eberhardt, S Abid
1Bristol-Myers Squibb Pharmaceutical Research Institute, Seattle, WA 98121.
Abstract:
The growth regulatory protein oncostatin M was initially discovered in macrophage-conditioned medium. We investigated the effects of oncostatin M on cultured rabbit aorta smooth muscle cells (SMCs) and found that the peptide stimulated an increase in the incorporation of [3H]thymidine into DNA. The magnitude of the stimulation was dependent on oncostatin M concentration and SMC confluency. In subconfluent cultures, 1-2 nM stimulated 4- to 5-fold increases in DNA synthesis after 20 hr. Other structurally related cytokines (granulocyte colony-stimulating factor, leukemia inhibitory factor, interleukin 6, ciliary neurotrophic factor) did not affect SMC DNA synthesis. After 5 or 8 days, oncostatin M caused a doubling in SMC number and also induced a transformed phenotype. The combination of oncostatin M and platelet-derived growth factor for 8 days resulted in a 4-fold increase in cell number, approximately the same increase in cell number as induced by the addition of 10% fetal calf serum. Further investigation suggested that the mitogenic effect of oncostatin M was in part due to tyrosine kinase activation. Within 1-2 min, the factor increased phosphotyrosine levels of several SMC proteins. In addition, detectable increases in diacylglycerol levels occurred within 2-5 min, reached 50% above control by 30 min, and remained elevated through 45 min of incubation with oncostatin M. SMC inositol phosphate levels were also elevated within 2 min and then returned to near control values by 20 min. Within 30 min, oncostatin M induced expression of the immediate-early gene EGR-1. These data indicate that oncostatin M may be an important, naturally occurring mitogen for vascular SMCs.
Insights
Oncostatin M significantly boosts DNA synthesis and cell proliferation in vascular smooth muscle cells (SMCs). This growth factor activates key signaling pathways, suggesting its role in vascular cell growth.
Area of Science:
- Cell Biology
- Molecular Biology
- Cardiovascular Research
Background:
- Oncostatin M (OSM) is a growth regulatory protein discovered in macrophage-conditioned medium.
- Vascular smooth muscle cells (SMCs) play a critical role in cardiovascular health and disease.
Purpose of the Study:
- To investigate the effects of Oncostatin M on cultured rabbit aorta smooth muscle cells (SMCs).
- To determine the signaling mechanisms underlying OSM's mitogenic activity in SMCs.
Main Methods:
- Cell culture of rabbit aorta SMCs.
- Measurement of [3H]thymidine incorporation to assess DNA synthesis.
- Analysis of protein tyrosine phosphorylation, diacylglycerol, and inositol phosphate levels.
- Assessment of immediate-early gene (EGR-1) expression.
Main Results:
- Oncostatin M significantly increased DNA synthesis in SMCs in a dose- and confluency-dependent manner.
- OSM induced a doubling in SMC number and a transformed phenotype over 5-8 days.
- OSM activated tyrosine kinases, increased diacylglycerol and inositol phosphate levels, and induced EGR-1 expression within minutes.
- Other related cytokines did not affect SMC DNA synthesis.
Conclusions:
- Oncostatin M is a potent mitogen for vascular SMCs.
- Its mitogenic effect is mediated, in part, by tyrosine kinase activation and downstream signaling events.
- OSM may play a significant role in vascular SMC proliferation in vivo.