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The transcription factor ATF5 is widely expressed in carcinomas, and interference with its function selectively kills
Sara E Monaco1, James M Angelastro, Matthias Szabolcs
1Department of Pathology, Columbia University College of Physicians and Surgeons, New York, NY, USA.
Abstract:
ATF5, a transcription factor important in differentiation, proliferation and survival, has been found to be highly expressed in neural progenitor cells and in certain tumors including glioblastomas (GBMs), but its expression in other normal and neoplastic tissues has not been extensively investigated. A tissue microarray immunostained for ATF5 showed diffuse nuclear expression (as defined by the presence in greater than 25% of cells) in 63% (117/186) of neoplastic samples, when compared to only 32% (20/62) in nonneoplastic tissues. When analyzed by histologic subtype, a significantly greater proportion of adenocarcinomas, transitional cell carcinomas, squamous cell carcinomas and metastatic carcinomas of various tissue origins had nuclear staining when compared to nonneoplastic tissues. There was no significant difference in ATF5 expression in renal cell carcinomas, lymphomas and seminomas, when compared to nonneoplastic tissues. An expanded series of nonarray breast resection specimens revealed a significantly greater proportion of ATF5 positivity in ductal and lobular carcinomas, when compared to normal breast tissue. Past work found that loss of ATF5 function triggers death of GBM cells, but not of normal activated astrocytes. Here, we observed that loss of ATF5 function caused significant apoptotic death of neoplastic breast cell lines, but not of nonneoplastic breast cell lines. Our data demonstrate elevated ATF5 expression in a wide variety of neoplasms and that interference with ATF5 function selectively triggers death of breast carcinoma cells. Such findings may have potential therapeutic application.
Insights
Activating transcription factor 5 (ATF5) is elevated in many cancers, including breast carcinoma. Inhibiting ATF5 selectively induces cancer cell death, suggesting therapeutic potential.
Area of Science:
- Molecular biology
- Cancer research
- Cell biology
Background:
- Activating transcription factor 5 (ATF5) is crucial for cell differentiation, proliferation, and survival.
- ATF5 is highly expressed in neural progenitor cells and glioblastomas (GBMs).
- Its expression in other normal and neoplastic tissues requires further investigation.
Purpose of the Study:
- To investigate ATF5 expression across various normal and neoplastic human tissues.
- To determine the effect of ATF5 inhibition on neoplastic versus non-neoplastic cell lines.
- To explore the therapeutic potential of targeting ATF5 in cancer.
Main Methods:
- Tissue microarray immunostaining for ATF5 in neoplastic and non-neoplastic samples.
- Histological subtyping and analysis of ATF5 expression.
- Expanded analysis of ATF5 in breast cancer specimens.
- Functional studies involving ATF5 inhibition in breast cancer cell lines.
Main Results:
- ATF5 showed significantly higher nuclear expression in 63% of neoplastic samples compared to 32% in non-neoplastic tissues.
- Elevated ATF5 expression was observed in adenocarcinomas, transitional cell carcinomas, squamous cell carcinomas, and metastatic carcinomas.
- ATF5 inhibition led to significant apoptosis in neoplastic breast cell lines but not in non-neoplastic ones.
Conclusions:
- ATF5 expression is elevated in a wide range of human neoplasms.
- Interference with ATF5 function selectively induces apoptosis in breast carcinoma cells.
- Targeting ATF5 represents a potential therapeutic strategy for certain cancers.
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