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Published on: July 22, 2020
RAD51AP1 Loss Attenuates Colorectal Cancer Stem Cell Renewal and Sensitizes to Chemotherapy
Allison E Bridges1, Sabarish Ramachandran1,2, Kavin Tamizhmani3
1Department of Biochemistry and Molecular Biology, Medical College of Georgia, Augusta University, Augusta, Georgia.
Abstract:
DNA damage, induced by either chemical carcinogens or environmental pollutants, plays an important role in the initiation of colorectal cancer. DNA repair processes, however, are involved in both protecting against cancer formation, and also contributing to cancer development, by ensuring genomic integrity and promoting the efficient DNA repair in tumor cells, respectively. Although DNA repair pathways have been well exploited in the treatment of breast and ovarian cancers, the role of DNA repair processes and their therapeutic efficacy in colorectal cancer is yet to be appreciably explored. To understand the role of DNA repair, especially homologous recombination (HR), in chemical carcinogen-induced colorectal cancer growth, we unraveled the role of RAD51AP1 (RAD51-associated protein 1), a protein involved in HR, in genotoxic carcinogen (azoxymethane, AOM)-induced colorectal cancer. Although AOM treatment alone significantly increased RAD51AP1 expression, the combination of AOM and dextran sulfate sodium (DSS) treatment dramatically increased by several folds. RAD51AP1 expression is found in mouse colonic crypt and proliferating cells. RAD51AP1 expression is significantly increased in majority of human colorectal cancer tissues, including BRAF/KRAS mutant colorectal cancer, and associated with reduced treatment response and poor prognosis. Rad51ap1-deficient mice were protected against AOM/DSS-induced colorectal cancer. These observations were recapitulated in a genetically engineered mouse model of colorectal cancer (ApcMin /+ ). Furthermore, chemotherapy-resistant colorectal cancer is associated with increased RAD51AP1 expression. This phenomenon is associated with reduced cell proliferation and colorectal cancer stem cell (CRCSC) self-renewal. Overall, our studies provide evidence that RAD51AP1 could be a novel diagnostic marker for colorectal cancer and a potential therapeutic target for colorectal cancer prevention and treatment. IMPLICATIONS: This study provides first in vivo evidence that RAD51AP1 plays a critical role in colorectal cancer growth and drug resistance by regulating CRCSC self-renewal.
Insights
RAD51AP1 protein is crucial for colorectal cancer growth and drug resistance. Its inhibition protects against cancer and may offer new therapeutic strategies for colorectal cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- DNA damage is a key factor in colorectal cancer initiation.
- DNA repair pathways are implicated in both cancer prevention and progression.
- The role of DNA repair, particularly homologous recombination (HR), in colorectal cancer is underexplored.
Purpose of the Study:
- To investigate the role of RAD51AP1 (RAD51-associated protein 1), an HR protein, in chemical carcinogen-induced colorectal cancer.
- To assess RAD51AP1's potential as a diagnostic marker and therapeutic target.
Main Methods:
- Utilized azoxymethane (AOM) and dextran sulfate sodium (DSS) to induce colorectal cancer in mice.
- Examined RAD51AP1 expression in mouse models and human colorectal cancer tissues.
- Assessed the impact of RAD51ap1 deficiency on cancer development.
- Investigated RAD51AP1 expression in chemotherapy-resistant colorectal cancer and its link to cancer stem cells.
Main Results:
- AOM and DSS treatments significantly increased RAD51AP1 expression in mouse colons.
- RAD51AP1 was elevated in most human colorectal cancer tissues, correlating with poor prognosis and reduced treatment response.
- Rad51ap1-deficient mice showed protection against chemically induced colorectal cancer.
- Increased RAD51AP1 expression was observed in chemotherapy-resistant colorectal cancer, linked to colorectal cancer stem cell (CRCSC) self-renewal.
Conclusions:
- RAD51AP1 plays a critical role in colorectal cancer growth, progression, and drug resistance.
- RAD51AP1 regulates colorectal cancer stem cell self-renewal.
- RAD51AP1 represents a potential novel diagnostic marker and therapeutic target for colorectal cancer.
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