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A Genetically Engineered Mouse Model of Sporadic Colorectal Cancer
Published on: July 6, 2017
Mitotic checkpoint regulator RAE1 promotes tumor growth in colorectal cancer
Yuta Kobayashi1,2, Takaaki Masuda1, Atsushi Fujii1
1Department of Surgery, Kyushu University Beppu Hospital, Oita, Japan.
Abstract:
Microtubules are among the most successful targets for anticancer therapy because they play important roles in cell proliferation as they constitute the mitotic spindle, which is critical for chromosome segregation during mitosis. Hence, identifying new therapeutic targets encoding proteins that regulate microtubule assembly and function specifically in cancer cells is critical. In the present study, we identified a candidate gene that promotes tumor progression, ribonucleic acid export 1 (RAE1), a mitotic checkpoint regulator, on chromosome 20q through a bioinformatics approach using datasets of colorectal cancer (CRC), including The Cancer Genome Atlas (TCGA). RAE1 was ubiquitously amplified and overexpressed in tumor cells. High expression of RAE1 in tumor tissues was positively associated with distant metastasis and was an independent poor prognostic factor in CRC. In vitro and in vivo analysis showed that RAE1 promoted tumor growth, inhibited apoptosis, and promoted cell cycle progression, possibly with a decreased proportion of multipolar spindle cells in CRC. Furthermore, RAE1 induced chemoresistance through its anti-apoptotic effect. In addition, overexpression of RAE1 and significant effects on survival were observed in various types of cancer, including CRC. In conclusion, we identified RAE1 as a novel gene that facilitates tumor growth in part by inhibiting apoptosis and promoting cell cycle progression through stabilizing spindle bipolarity and facilitating tumor growth. We suggest that it is a potential therapeutic target to overcome therapeutic resistance of CRC.
Insights
Ribonucleic acid export 1 (RAE1) drives tumor growth and chemoresistance in colorectal cancer by promoting cell cycle progression and inhibiting apoptosis. Targeting RAE1 may offer a new strategy against cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Microtubules are crucial for cell division and are established anticancer targets.
- Identifying novel cancer-specific targets regulating microtubule function is essential.
Purpose of the Study:
- To identify and characterize novel genes promoting tumor progression in colorectal cancer (CRC).
- To evaluate ribonucleic acid export 1 (RAE1) as a potential therapeutic target in CRC.
Main Methods:
- Bioinformatic analysis of CRC datasets (TCGA).
- In vitro and in vivo experiments to assess RAE1 function.
- Correlation analysis of RAE1 expression with clinical parameters.
Main Results:
- RAE1 was amplified and overexpressed in CRC tumors, correlating with metastasis and poor prognosis.
- RAE1 promoted tumor growth, cell cycle progression, and chemoresistance by inhibiting apoptosis.
- RAE1 overexpression was observed in various cancer types.
Conclusions:
- RAE1 is a novel oncogene that facilitates tumor growth and chemoresistance in CRC.
- RAE1 stabilizes spindle bipolarity, inhibits apoptosis, and promotes cell cycle progression.
- RAE1 represents a potential therapeutic target for overcoming CRC resistance.
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