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Published on: November 20, 2015
Cooperative disengagement of Fas and intercellular adhesion molecule-1 function in neoplastic cells confers enhanced
Kebin Liu1, Sheila A Caldwell, Scott I Abrams
1Laboratory of Tumor Immunology and Biology, Center for Cancer Research, National Cancer Institute/NIH, 10 Center Drive, Bethesda, MD 20892-1402, USA.
Abstract:
Understanding the mechanisms of tumor progression is crucial toward the development of therapeutic interventions. Although the loss of sensitivity to cell death is a hallmark of neoplastic progression, it is likely one of several essential features that underlie a malignantly proficient or aggressive tumorigenic phenotype. Here, we identified intercellular adhesion molecule-1 (ICAM-1) as a molecule with expression coordinately regulated with Fas and inversely correlated with malignant phenotype between matched pairs of differentially aggressive malignant subpopulations in three mouse models. To determine whether coordinate expression of Fas and ICAM-1 regulated malignant behavior, tumor sublines were produced that expressed either lower levels of both Fas and ICAM-1, lower levels of Fas, or lower levels of ICAM-1 and then assessed for metastatic lung tumor growth. Tumor sublines rendered both Fas incompetent and ICAM-1 incompetent displayed significantly higher numbers of tumor nodules compared with tumor sublines separately expressing low levels of Fas or ICAM-1. However, all tumor sublines regardless of their Fas and ICAM-1 levels comparably infiltrated the lung, suggesting that Fas- and ICAM-1-based interactions ultimately influenced lung colonization efficiency. Overall, these data suggested that both Fas and ICAM-1 pathways cooperated to regulate tumor progression and that the coordinate down-regulation of Fas and ICAM-1 intensified malignant progression at the level of colonization. Thus, a Fas(lo)ICAM-1(lo) phenotype may be characteristic of at least certain advancing, immune-resistant neoplastic subpopulations.
Insights
Intercellular adhesion molecule-1 (ICAM-1) and Fas expression are linked to tumor aggression. Down-regulation of both ICAM-1 and Fas enhances tumor metastasis, suggesting a role in immune resistance.
Area of Science:
- Cancer Biology
- Immunology
- Molecular Oncology
Background:
- Tumor progression involves resistance to cell death, but other features also contribute to aggressive phenotypes.
- Intercellular adhesion molecule-1 (ICAM-1) and Fas are key molecules in cellular interactions and immune responses.
Purpose of the Study:
- To investigate the role of intercellular adhesion molecule-1 (ICAM-1) and Fas expression in regulating tumor progression and metastasis.
- To determine if coordinate regulation of ICAM-1 and Fas influences malignant behavior.
Main Methods:
- Expression levels of ICAM-1 and Fas were analyzed in differentially aggressive tumor subpopulations from three mouse models.
- Tumor sublines with varying levels of Fas and ICAM-1 (low/low, low Fas, low ICAM-1) were generated.
- Metastatic lung tumor growth was assessed in these engineered tumor sublines.
Main Results:
- ICAM-1 expression was coordinately regulated with Fas and inversely correlated with the malignant phenotype.
- Tumor sublines with both low ICAM-1 and low Fas exhibited significantly more lung nodules compared to those with only one low.
- Lung infiltration was comparable across all sublines, indicating Fas and ICAM-1 primarily affect lung colonization efficiency.
Conclusions:
- Fas and ICAM-1 pathways cooperate to regulate tumor progression, with their coordinated down-regulation intensifying malignant progression at the colonization stage.
- A low Fas and low ICAM-1 (Fas(lo)ICAM-1(lo)) phenotype may characterize advancing, potentially immune-resistant neoplastic subpopulations.
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