4.8 Article

Podoplanin is a novel Fos target gene in skin carcinogenesis

Journal

CANCER RESEARCH
Volume 68, Issue 17, Pages 6877-6883

Publisher

AMER ASSOC CANCER RESEARCH
DOI: 10.1158/0008-5472.CAN-08-0299

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Funding

  1. German Ministry for Education and Research National Genome Research Network NGFN-2. [01GS0460, 01GR0418]
  2. SBCancer Program of the Helmholtz Society
  3. Studienstiftung des Deutschen Volkes
  4. Boehringer Ingelheirn

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Expression and function of the oncogenic transcription factor activator protein (A-P-1; mainly composed of Jun and Fos proteins) is required for neoplastic transformation of keratinocytes in vitro and tumor promotion as well as malignant progression in vivo. Here, we describe the identification of 372 differentially expressed genes comparing skin tumor samples of K5-SOS-F transgenic mice (Fos(f/f) SOS+) with samples derived from animals with a specific deletion of c-Fos in keratinocytes (Fos(Delta ep) SOS+). Fos-dependent transcription of selected genes was confirmed by quantitative real-time PCR analysis using tumor samples and mouse back skin treated with the tumor promoter 12-O-tetradecanoylphorbol-13-acetate (TPA). One of the most differentially expressed genes encodes the small mucin-like glycoprotein Podoplanin (Pdpn), whose expression correlates with malignant progression in mouse tumor model systems and human cancer. We found Pdpn and Fos expression in chemically induced mouse skin tumors, and detailed analysis of the Pdpn gene promoter revealed impaired activity in Fos-deficient. mouse embryonic fibroblasts, which could be restored by ectopic Fos expression. Direct Fos protein binding to the Pdpn promoter v.,as shown by chromatin immunoprecipitation and a TPA-induced complex at a TPA-responsive element-like motif in the proximal promoter was identified by electrophoretic mobility shift assays. In summary, we could define a Fos-dependent genetic program in a well-establisited model of skin tumors. Systematic analysis of these novel target genes will guide its in elucidating the molecular mechanisms of AP-1-regulated pathways that are critically implicated in neoplastic transformation and/or malignant progression.

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