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Frizzled-8 receptor is activated by the Wnt-2 ligand in non-small cell lung cancer

Authors :
Yi-Lin Yang
Ming-Szu Hung
Liang You
Kristopher M. Kuchenbecker
David M. Jablons
Zhidong Xu
Dawn T. Bravo
Source :
Bravo, Dawn T; Yang, Yi-Lin; Kuchenbecker, Kristopher; Hung, Ming-Szu; Xu, Zhidong; Jablons, David M; et al.(2013). Frizzled-8 receptor is activated by the Wnt-2 ligand in non-small cell lung cancer. BMC Cancer, 13(1), 316. doi: http://dx.doi.org/10.1186/1471-2407-13-316. Retrieved from: http://www.escholarship.org/uc/item/9rh0m1jv, BMC Cancer
Publication Year :
2013
Publisher :
Springer Science and Business Media LLC, 2013.

Abstract

Background Wnt-2 plays an oncogenic role in cancer, but which Frizzled receptor(s) mediates the Wnt-2 signaling pathway in lung cancer remains unclear. We sought to (1) identify and evaluate the activation of Wnt-2 signaling through Frizzled-8 in non-small cell lung cancer, and (2) test whether a novel expression construct dominant negative Wnt-2 (dnhWnt-2) reduces tumor growth in a colony formation assay and in a xenograft mouse model. Methods Semi-quantitative RT-PCR was used to identify the expression of Wnt-2 and Frizzled-8 in 50 lung cancer tissues from patients. The TCF reporter assay (TOP/FOP) was used to detect the activation of the Wnt canonical pathway in vitro. A novel dnhWnt-2 construct was designed and used to inhibit activation of Wnt-2 signaling through Frizzled-8 in 293T, 293, A549 and A427 cells and in a xenograft mouse model. Statistical comparisons were made using Student’s t-test. Results Among the 50 lung cancer samples, we identified a 91% correlation between the transcriptional increase of Wnt-2 and Frizzled-8 (ppp Conclusions We demonstrated an activation of Wnt-2 signaling via the Frizzled-8 receptor in NSCLC cells. A novel dnhWnt-2 construct significantly inhibits Wnt-2 signaling, reduces colony formation of NSCLC cells in vitro and tumor growth in a xenograft mouse model. The dnhWnt-2 construct may provide a new therapeutic avenue for targeting the Wnt pathway in lung cancer.

Details

ISSN :
14712407
Volume :
13
Database :
OpenAIRE
Journal :
BMC Cancer
Accession number :
edsair.doi.dedup.....33bb93db62d3fc7d86f3e9dbc5ddf75c