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Oncogenic role of rab escort protein 1 through EGFR and STAT3 pathway
Un-Jung Yun1, Jee Young Sung2, Seog-Yun Park3
1Comparative Biomedicine Research Branch, Division of Cancer Biology, National Cancer Center, Goyang, Korea.
Abstract:
Rab escort protein-1 (REP1) is linked to choroideremia (CHM), an X-linked degenerative disorder caused by mutations of the gene encoding REP1 (CHM). REP1 mutant zebrafish showed excessive cell death throughout the body, including the eyes, indicating that REP1 is critical for cell survival, a hallmark of cancer. In the present study, we found that REP1 is overexpressed in human tumor tissues from cervical, lung, and colorectal cancer patients, whereas it is expressed at relatively low levels in the normal tissue counterparts. REP1 expression was also elevated in A549 lung cancer cells and HT-29 colon cancer cells compared with BEAS-2B normal lung and CCD-18Co normal colon epithelial cells, respectively. Interestingly, short interfering RNA (siRNA)-mediated REP1 knockdown-induced growth inhibition of cancer cell lines via downregulation of EGFR and inactivation of STAT3, but had a negligible effect on normal cell lines. Moreover, overexpression of REP1 in BEAS-2B cells enhanced cell growth and anchorage-independent colony formation with little increase in EGFR level and STAT3 activation. Furthermore, REP1 knockdown effectively reduced tumor growth in a mouse xenograft model via EGFR downregulation and STAT3 inactivation in vivo. These data suggest that REP1 plays an oncogenic role, driving tumorigenicity via EGFR and STAT3 signaling, and is a potential therapeutic target to control cancers.
Insights
Rab escort protein-1 (REP1) is crucial for cell survival. Its overexpression drives cancer growth by activating EGFR and STAT3 signaling, making it a potential therapeutic target for various cancers.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Rab escort protein-1 (REP1) is associated with choroideremia (CHM).
- REP1 is essential for cell survival, a characteristic also observed in cancer.
- Mutant zebrafish lacking REP1 exhibit widespread cell death.
Purpose of the Study:
- To investigate the role of REP1 in human cancers.
- To determine if REP1 acts as an oncogene.
- To explore REP1 as a potential cancer therapeutic target.
Main Methods:
- Analysis of REP1 expression in human tumor tissues and cancer cell lines.
- Short interfering RNA (siRNA)-mediated knockdown of REP1 in cancer cells.
- Overexpression studies of REP1 in normal cells.
- In vivo studies using a mouse xenograft model.
Main Results:
- REP1 is overexpressed in cervical, lung, and colorectal cancer tissues compared to normal tissues.
- REP1 knockdown inhibits cancer cell growth by downregulating EGFR and inactivating STAT3.
- REP1 overexpression enhances normal cell growth and colony formation.
- REP1 knockdown reduces tumor growth in vivo.
Conclusions:
- REP1 plays an oncogenic role in tumorigenesis.
- REP1 promotes cancer cell growth and survival through EGFR and STAT3 signaling pathways.
- REP1 is a potential therapeutic target for cancer treatment.
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