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Published on: September 5, 2018
KRAS and BRAF mutations induce anoikis resistance and characteristic 3D phenotypes in Caco‑2 cells
Madhura Patankar1, Sinikka Eskelinen1, Anne Tuomisto1
1Department of Pathology, Cancer and Translational Medicine Research Unit, University of Oulu, 90014 Oulu, Finland.
Abstract:
In a number of types of cancer, anoikis, a form of apoptosis induced by loss of extracellular matrix (ECM) attachment, is disturbed. Anoikis resistance is essential in the formation of metastases. A recent study identified carcinoma cell subpopulations surviving without ECM contact in pathological specimens of colorectal cancer. The occurrence of these subpopulations indicated anoikis resistance. In the present study, it is demonstrated that KRAS and BRAF mutations induce anoikis resistance in colon cancer (Caco‑2) cells. In 3D cultures, Caco‑2 cells transfected with mutated KRAS or BRAF formed multicellular structures analogous to anoikis‑resistant subpopulations in actual carcinomas, and serve as an in vitro model for anoikis resistance. Caco‑2 cell lines were constructed, with KRAS or BRAF mutations, using retroviral delivery. The current study investigated anoikis resistance using an Annexin V apoptosis test from suspension cultures. 3D in vitro cultures, which were generated in collagen‑matrigel mixtures, were assessed using confocal microscopy. 3D cultures embedded in paraffin were analyzed using conventional histopathology. In suspension cultures, Caco‑2 cells with KRAS or BRAF mutations indicated a significantly lower proportion of Annexin positivity than the native Caco‑2 cells, indicating that these mutations induce anoikis resistance in Caco‑2 cells. 3D cultures displayed native Caco‑2 cells forming polarized cysts with a single layer thick epithelium, whereas Caco‑2 cells with KRAS or BRAF mutations formed partially filled cystic structures or solid round structures where only the outermost layer was in contact with the ECM. Additionally, KRAS mutations induced reversed polarity to Caco‑2 cells along with the emergence of solid growth. The present study demonstrated that KRAS and BRAF mutations induce anoikis resistance in Caco‑2 colorectal cancer cells. The growth patterns generated from the KRAS and BRAF mutated cells in 3D cultures revealed a resemblance to the putative anoikis‑resistant subpopulations in actual carcinomas, including micropapillary structures and solid tumor cell islands. Additionally, KRAS mutation induced the emergence of inverted polarity. In conclusion, 3D cultures with modified Caco‑2 cells serve as a valid in vitro model for anoikis resistance and inverted polarity.
Insights
KRAS and BRAF mutations promote anoikis resistance in colorectal cancer cells, enabling metastasis. Modified Caco-2 cells in 3D cultures mimic cancer subpopulations, serving as a model for anoikis resistance and inverted polarity.
Area of Science:
- Oncology
- Cell Biology
- Cancer Research
Background:
- Anoikis, a form of apoptosis triggered by ECM detachment, is often dysregulated in cancer.
- Anoikis resistance is crucial for cancer cell survival and metastasis formation.
- Specific carcinoma cell subpopulations exhibiting anoikis resistance have been identified in colorectal cancer.
Purpose of the Study:
- To investigate the role of KRAS and BRAF mutations in inducing anoikis resistance in colon cancer (Caco-2) cells.
- To establish an in vitro model for studying anoikis resistance using 3D cultures of genetically modified Caco-2 cells.
Main Methods:
- Caco-2 cells were engineered with KRAS or BRAF mutations using retroviral delivery.
- Anoikis resistance was assessed via Annexin V apoptosis assays in suspension cultures.
- 3D in vitro cultures in collagen-matrigel were analyzed using confocal microscopy and histopathology.
Main Results:
- Caco-2 cells with KRAS or BRAF mutations showed significantly reduced Annexin V positivity in suspension, indicating anoikis resistance.
- 3D cultures of mutated cells formed structures resembling anoikis-resistant subpopulations found in carcinomas, including solid and partially filled cysts.
- KRAS mutations induced reversed polarity and solid growth patterns in Caco-2 cells.
Conclusions:
- KRAS and BRAF mutations confer anoikis resistance in Caco-2 colorectal cancer cells.
- Engineered 3D Caco-2 cell cultures serve as a valid in vitro model for studying anoikis resistance and inverted polarity.
- The observed growth patterns in 3D cultures mimic key features of anoikis-resistant cancer subpopulations in vivo.
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