4.6 Article

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

期刊

BMC CANCER
卷 13, 期 -, 页码 -

出版社

BIOMED CENTRAL LTD
DOI: 10.1186/1471-2407-13-316

关键词

Frizzled-8; Wnt-2; dnhWnt-2 Construct; Lung Cancer; Wnt Signaling

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资金

  1. NIH [F32CA119636, R01 CA140654-01A1]
  2. Larry Hall and Zygielbaum Memorial Trust
  3. Kazan Foundation, Inc.
  4. McClain Foundation, Inc.
  5. Abrams Foundation, Inc.
  6. Fernandez Foundation, Inc.
  7. Lyons Foundation, Inc.
  8. Greenwood Foundation, Inc.
  9. Harley & Oberman Foundation, Inc.
  10. Estate of Robert Griffiths
  11. Jeffrey and Karen Peterson Family Foundation
  12. Paul and Michelle Zygielbaum
  13. Estate of Norman Mancini
  14. Barbara Isackson Lung Cancer Research Fund

向作者/读者索取更多资源

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 (p<0.05). The Wnt canonical pathway was activated when both Wnt-2 and Frizzled-8 were co-expressed in 293T, 293, A549 and A427 cells. The dnhWnt-2 construct we used inhibited the activation of Wnt-2 signaling in 293T, 293, A549 and A427 cells, and reduced the colony formation of NSCLC cells when beta-catenin was present (p<0.05). Inhibition of Wnt-2 activation by the dnhWnt-2 construct further reduced the size and mass of tumors in the xenograft mouse model (p<0.05). The inhibition also decreased the expression of target genes of Wnt signaling in these tumors. 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.

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