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MMSP tumor cells expressing the EWS/ATF1 oncogene do not support cAMP-inducible transcription
1Department of Biology, Hong Kong University of Science & Technology, Clear Water Bay, Kowloon, PRC.
Abstract:
Malignant Melanoma of Soft Parts (MMSP) is associated with the EWS/ATF1 fusion protein that arises due to chromosomal fusion of the Ewings Sarcoma oncogene (EWS) and the cellular transcription factor ATF1. EWS/ATF1 can activate several cAMP-inducible promoters, suggesting that cellular transformation in MMSP might involve constitutive activation of cAMP-inducible promoters. To assess this possibility we have examined the status of the cAMP-signaling pathway in the available MMSP-derived cell lines (DTC1 and Su-ccs-1) and find that both cell lines share several features. First, in contrast to previous effects observed in transient assays, three chromosomal promoters containing ATF binding sites are not constitutively activated by endogenous EWS/ATF1 in MMSP cells. Second, all the components that are known to be required for cAMP-inducible transcription are present. Third, phosphorylation of the cAMP-response-element-binding protein (CREB) can be efficiently induced by cAMP. Fourth, cAMP is unable to activate transcription, as assessed by a GAL4/ATF1 reporter assay and analysis of the c-fos and adenovirus early promoters. Thus, cell lines derived from MMSP have a block to cAMP-signaling that lies downstream of CREB phosphorylation. In light of the cAMP-responsiveness of almost all mammalian cell types, our findings suggest that the inability to respond to cAMP might be an important feature of MMSP cells.
Insights
Malignant Melanoma of Soft Parts (MMSP) cells exhibit a blocked cAMP-signaling pathway downstream of CREB phosphorylation. This suggests MMSP cells
Area of Science:
- Oncology
- Molecular Biology
- Cellular Signaling
Background:
- Malignant Melanoma of Soft Parts (MMSP) is linked to the EWS/ATF1 fusion protein.
- EWS/ATF1's ability to activate cAMP-inducible promoters suggests a role in MMSP cellular transformation.
Purpose of the Study:
- To investigate the cAMP-signaling pathway status in MMSP-derived cell lines.
- To determine if constitutive activation of cAMP-inducible promoters occurs in MMSP.
Main Methods:
- Analysis of chromosomal promoters containing ATF binding sites in MMSP cell lines.
- Assessment of cAMP-inducible transcription components and CREB phosphorylation.
- Reporter assays (GAL4/ATF1) and analysis of specific promoters (c-fos, adenovirus early promoters) to evaluate cAMP-induced transcription.
Main Results:
- Endogenous EWS/ATF1 does not constitutively activate specific chromosomal promoters in MMSP cells.
- All necessary components for cAMP-inducible transcription are present.
- CREB phosphorylation is inducible by cAMP, but transcription activation by cAMP is blocked.
- The block in cAMP signaling occurs downstream of CREB phosphorylation.
Conclusions:
- MMSP cell lines possess a defect in the cAMP-signaling pathway, specifically downstream of CREB phosphorylation.
- This impaired cAMP response may be a key characteristic of MMSP cells, differentiating them from most mammalian cells.