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Intracellular estrogen receptor-binding fragment-associated antigen 9 exerts in vivo tumor-promoting effects via its coiled-coil region. | LitMetric

AI Article Synopsis

  • EBAG9 is identified as a tumor-promoting factor with unknown functions, and its role was studied using murine tumor cell lines.
  • Overexpression of full-length EBAG9 in these cell lines resulted in faster tumor growth in mice, while a truncated version lacking the coiled-coil region did not promote tumor growth, highlighting the importance of this specific domain.
  • Despite variations in EBAG9 forms, no significant differences were observed in cell proliferation or immune evasion-related marker expression, indicating that tumor growth promotion might involve interactions with unknown partners through the coiled-coil region.

Article Abstract

Estrogen receptor-binding fragment-associated antigen 9 (EBAG9) is a tumor-promoting factor of largely unknown function. To assess a causative role of EBAG9 in advanced malignancies, we generated the EG7-OVA and MethA murine tumor cell lines that stably express full-length or truncated EBAG9 protein, using retroviral-mediated gene transduction. Upon subcutaneous inoculation into immunocompetent mice, both cell lines showed marked acceleration of in vivo tumor growth when full-length EBAG9 was overexpressed. Interestingly, deletion of the coiled-coil region, thereby producing truncated EBAG9 protein, abolished the tumor-acceleration effect, establishing the importance of this domain in EBAG9-mediated tumor promotion. However, there was no alteration in in vitro cell proliferation or expression levels of MHC class I and co-stimulatory molecules believed to play a role in immune evasion of tumor cells in these tumor cell lines expressing full-length or truncated EBAG9 protein. Furthermore, both full-length and truncated EBAG9 proteins showed a predominantly cytoplasmic localization in the tumor cells. Collectively, these results suggest that EBAG9 overexpression can be causative in enhancing the malignant properties of tumor cells, and that tumor promotion likely requires EBAG9 intracellular association with as yet unidentified binding partners via the coiled-coil region.

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Source
http://dx.doi.org/10.3892/ijo.2011.1026DOI Listing

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