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A Multiplexed Luciferase-based Screening Platform for Interrogating Cancer-associated Signal Transduction in Cultured Cells
Published on: July 3, 2013
TP53 and let-7a micro-RNA regulate K-Ras activity in HCT116 colorectal cancer cells
Carrie Luu1, Eileen L Heinrich, Marjun Duldulao
1Division of Surgical Oncology, Department of Surgery, City of Hope Comprehensive Cancer Center, Duarte, California, USA.
Abstract:
Recent reports have indicated that KRAS and TP53 mutations predict response to therapy in colorectal cancer. However, little is known about the relationship between these two common genetic alterations. Micro-RNAs (miRNAs), a class of noncoding RNA implicated in cellular processes, have been increasingly linked to KRAS and TP53. We hypothesized that lethal-7a (let-7a) miRNA regulates KRAS through TP53. To investigate the relationship between KRAS, TP53, and let-7a, we used HCT116 KRAS(mut) human colorectal cancer cells with four different genotypic modifications in TP53 (TP53(-/-), TP53(+/-), TP53(mut/+), and TP53(mut/-) ). Using these cells we observed that K-Ras activity was higher in cells with mutant or knocked out TP53 alleles, suggesting that wild-type TP53 may suppress K-Ras activity. Let-7a was present in HCT116 KRAS(mut) cells, though there was no correlation between let-7a level and TP53 genotype status. To explore how let-7a may regulate K-Ras in the different TP53 genotype cells we used let-7a inhibitor and demonstrated increased K-Ras activity across all TP53, thus corroborating prior reports that let-7a regulates K-Ras. To assess potential clinical implications of this regulatory network, we examined the influence of TP53 genotype and let-7a inhibition on colon cancer cell survival following chemoradiation therapy (CRT). We observed that cells with complete loss of wild-type TP53 alleles ((-/-) or (-/mut)) were resistant to CRT following treatment with 5-fluorouracil and radiation. Further increase in K-Ras activity with let-7a inhibition did not impact survival in these cells. In contrast, cells with single or double wild-type TP53 alleles were moderately responsive to CRT and exhibited resistance when let-7a was inhibited. In summary, our results show a complex regulatory system involving TP53, KRAS, and let-7a. Our results may provide clues to understand and target these interactions in colorectal cancer.
Insights
Wild-type TP53 suppresses KRAS activity, and let-7a miRNA also regulates KRAS. Loss of TP53 confers resistance to chemoradiation therapy in colorectal cancer.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- KRAS and TP53 mutations are key in colorectal cancer therapy response.
- The interplay between KRAS, TP53, and micro-RNAs (miRNAs) is not well understood.
- let-7a miRNA is implicated in regulating KRAS and TP53 pathways.
Purpose of the Study:
- To investigate the regulatory relationship between KRAS, TP53, and let-7a miRNA.
- To explore the impact of TP53 genotype and let-7a inhibition on colorectal cancer cell survival following chemoradiation therapy (CRT).
Main Methods:
- Utilized HCT116 KRAS(mut) human colorectal cancer cells with varied TP53 genotypes (TP53(-/-), TP53(+/-), TP53(mut/+), TP53(mut/-)).
- Assessed K-Ras activity, let-7a levels, and cell survival following CRT with 5-fluorouracil and radiation.
- Employed let-7a inhibitors to study its regulatory role.
Main Results:
- Higher K-Ras activity was observed in cells with mutant or knocked-out TP53 alleles, suggesting wild-type TP53 suppresses K-Ras.
- let-7a inhibition increased K-Ras activity across all TP53 genotypes.
- Colorectal cancer cells lacking wild-type TP53 were resistant to CRT; those with wild-type TP53 showed reduced CRT response upon let-7a inhibition.
Conclusions:
- A complex regulatory network exists involving TP53, KRAS, and let-7a in colorectal cancer.
- Wild-type TP53 appears to suppress K-Ras activity, and let-7a regulates K-Ras.
- TP53 genotype significantly influences CRT response, with let-7a inhibition impacting sensitivity in cells with wild-type TP53 alleles.
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