Vaginal Squamous Cell Carcinoma Develops in Mice with Conditional Arid1a Loss and Gain of Oncogenic Kras Driven by
Xiyin Wang1, Mariana S L Praça1, Jillian R H Wendel1
1Department of Obstetrics and Gynecology, Indiana University School of Medicine, Indianapolis, Indiana.
Abstract:
Oncogenic KRAS mutations are a common finding in endometrial cancers. Recent sequencing studies indicate that loss-of-function mutations in the ARID1A gene are enriched in gynecologic malignant tumors. However, neither of these genetic insults alone are sufficient to develop gynecologic cancer. To determine the role of the combined effects of deletion of Arid1a and oncogenic Kras, Arid1aflox/flox mice were crossed with KrasLox-Stop-Lox-G12D/+ mice using progesterone receptor Cre (PgrCre/+). Histologic analysis and immunohistochemistry of survival studies were used to characterize the mutant mouse phenotype. Hormone dependence was evaluated by ovarian hormone depletion and estradiol replacement. Arid1aflox/flox; KrasLox-Stop-Lox-G12D/+; PgrCre/+ mice were euthanized early because of invasive vaginal squamous cell carcinoma. Younger mice had precancerous intraepithelial lesions. Immunohistochemistry supported the pathological diagnosis with abnormal expression and localization of cytokeratin 5, tumor protein P63, cyclin-dependent kinase inhibitor 2A, and Ki-67, the marker of proliferation. Ovarian hormone deletion in Arid1aflox/flox; KrasLox-Stop-Lox-G12D/+; PgrCre/+ mice resulted in atrophic vaginal epithelium without evidence of vaginal tumors. Estradiol replacement in ovarian hormone-depleted Arid1aflox/flox; KrasLox-Stop-Lox-G12D/+; PgrCre/+ mice resulted in lesions that resembled the squamous cell carcinoma in intact mice. Therefore, this mouse can be used to study the transition from benign precursor lesions into invasive vaginal human papillomavirus-independent squamous cell carcinoma, offering insights into progression and pathogenesis of this rare disease.
Insights
Combined Arid1a deletion and oncogenic Kras mutations in mice induce vaginal squamous cell carcinoma. Hormone levels influence tumor development, providing a model for human papillomavirus-independent cancer research.
Area of Science:
- Gynecologic Oncology
- Cancer Genetics
- Tumorigenesis
Background:
- Oncogenic KRAS mutations are frequent in endometrial cancers.
- Loss-of-function ARID1A mutations are enriched in gynecologic malignancies.
- Neither genetic alteration alone is sufficient for gynecologic cancer development.
Purpose of the Study:
- To investigate the combined effects of Arid1a deletion and oncogenic Kras.
- To establish a mouse model for studying vaginal squamous cell carcinoma pathogenesis.
- To evaluate the role of hormones in tumor development and progression.
Main Methods:
- Generation of Arid1aflox/flox; KrasLox-Stop-Lox-G12D/+; PgrCre/+ mice.
- Histologic analysis and immunohistochemistry for phenotypic characterization.
- Evaluation of hormone dependence via ovarian hormone depletion and estradiol replacement.
Main Results:
- Mice with combined Arid1a deletion and oncogenic Kras developed invasive vaginal squamous cell carcinoma.
- Precancerous intraepithelial lesions were observed in younger mice.
- Hormone depletion prevented tumor formation, while estradiol replacement promoted squamous cell carcinoma development.
Conclusions:
- The developed mouse model mimics human papillomavirus-independent vaginal squamous cell carcinoma.
- This model is valuable for studying the transition from precursor lesions to invasive cancer.
- Findings offer insights into the pathogenesis and progression of this rare gynecologic cancer.
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