4.7 Article

Downregulation of IFN-γR in association with loss of Fas function is linked to tumor progression

期刊

INTERNATIONAL JOURNAL OF CANCER
卷 122, 期 2, 页码 350-362

出版社

WILEY
DOI: 10.1002/ijc.23090

关键词

IFN-gamma R; Fas; immunoselection; tumor progression; tumor escape

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资金

  1. Intramural NIH HHS Funding Source: Medline
  2. NCI NIH HHS [R01 CA133085] Funding Source: Medline

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work in the recognition and destruction of tumor cells, and it has been demonstrated that lymphocytes and IFN-gamma are the primary tumor suppressors of the immune system. However, the immune system can concurrently select for tumor variants with reduced immunogenicity and aggressive phenotypes. We report here that tumor escape variants that have survived CTL adoptive immunotherapy exhibited decreased expression levels of both Fas and IFN-gamma R in vitro. Furthermore, examination of spontaneously arising mouse primary mammary carcinoma and lung metastases revealed that both Fas and IFN-gamma R protein levels were dramatically lower in lung metastases than in primary tumors in vivo. Functional disruption of either the Fas- or the IFN-gamma signaling pathway enhanced the colonization efficiency of preexisting metastatic tumor cells, whereas disruption of both Fas and IFN-gamma R pathways resulted in synergistic augmentation of the colonization efficiency of the preexisting metastatic tumor cells, as determined by experimental lung metastases assay. Gene expression profiling revealed that altered expression of genes involved in immediate IFN-gamma R signaling, the interferon primary response, apoptosis and tumor colonization is associated with loss of IFN-gamma R function and enhanced metastatic potential. Interestingly, disruption of IFN-gamma R function did not alter tumor cell susceptibility to CTL-mediated cytotoxicity, but is linked to enhanced infiltration of endogenous T cells in the tumor microenvironment in vivo. These findings suggest that coordinate downregulation of Fas and IFN-gamma R, 2 key components of cancer immunosurveillance system on tumor cells, leads to a more aggressive metastatic phenotype. (C) 2007 Wiley-Liss, Inc.

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