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Am J Physiol Lung Cell Mol Physiol (September 5, 2003). doi:10.1152/ajplung.00160.2003
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Submitted on May 21, 2003
Accepted on August 28, 2003

BMP4 signaling induces senescence and modulates the oncogenic phenotype of A549 lung adenocarcinoma cells

S. Buckley1, W. Shi1, B. Driscoll1, A. Ferrario2, K. Anderson3, and D. Warburton1*

1 Developmental Biology Program, Childrens Hospital of Los Angeles Research Institute, Los Angeles, CA, USA; Division of Pediatric Surgery, Childrens Hospital of Los Angeles, Los Angeles, CA, USA
2 Division of Ocular Oncology, Childrens Hospital of Los Angeles Research Institute, Los Angeles, CA, USA
3 ; Division of Pediatric Surgery, Childrens Hospital of Los Angeles, Los Angeles, CA, USA

* To whom correspondence should be addressed. E-mail: dwarburton{at}chla.usc.edu.

Lung cancer is the most common visceral malignancy in males, with rapidly increasing incidence in females, and a devastatingly poor prognosis. TGF-{beta} has been shown to induce senescence in A549 lung cancer cells, and both TGF-{beta} and BMP2 can suppress the transformed phenotype of A549 cells in vitro. We examined the effects of BMP4, another member of the TGF-{beta} superfamily, on specific oncogenic properties of A549 cancer cells. When A549 cancer cells were treated continuously with 100 ng/ml BMP4, a senescent phenotype was observed after 2 weeks treatment. The BMP4-treated cells appeared larger than untreated cells, grew more slowly, had more senescence-associated {beta}-galactosidase activity, and had less telomerase activity, as measured by the telomeric repeat amplification protocol(TRAP)assay. Invasion through EHS matrix was inhibited in the senescent cell population. Senescent BMP4-treated cells had lower ERK activation, VEGF expression and Bcl2 expression than wild type cells, consistent with a less proliferative, less angiogenic phenotype with increased susceptibility to death by apoptosis. BMP4 treatment also resulted in sustained elevation of Smad1. In vivo xenograft studies in the flanks of nude mice confirmed that the BMP-treated cells were significantly less tumorigenic than untreated cells. Direct overexpression of Smad1 using adenoviral constructs resulted in cell death within 5 days. These studies suggest that BMP4 pathway signaling can induce senescence and thus negatively regulate the growth of A549 lung cancer cells.




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