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Orthotopic Transplantation of Breast Tumors as Preclinical Models for Breast Cancer
Published on: May 18, 2020
Exploring the gain of function contribution of AKT to mammary tumorigenesis in mouse models
Carmen Blanco-Aparicio1, Marta Cañamero, Yolanda Cecilia
1Experimental Therapeutics Programme, Spanish National Cancer Research Centre, Madrid, Spain.
Abstract:
Elevated expression of AKT has been noted in a significant percentage of primary human breast cancers, mainly as a consequence of the PTEN/PI3K pathway deregulation. To investigate the mechanistic basis of the AKT gain of function-dependent mechanisms of breast tumorigenesis, we explored the phenotype induced by activated AKT transgenes in a quantitative manner. We generated several transgenic mice lines expressing different levels of constitutively active AKT in the mammary gland. We thoroughly analyzed the preneoplastic and neoplastic mammary lesions of these mice and correlated the process of tumorigenesis to AKT levels. Finally, we analyzed the impact that a possible senescent checkpoint might have in the tumor promotion inhibition observed, crossing these lines to mammary specific p53(R172H) mutant expression, and to p27 knock-out mice. We analyzed the benign, premalignant and malignant lesions extensively by pathology and at molecular level analysing the expression of proteins involved in the PI3K/AKT pathway and in cellular senescence. Our findings revealed an increased preneoplastic phenotype depending upon AKT signaling which was not altered by p27 or p53 loss. However, p53 inactivation by R172H point mutation combined with myrAKT transgenic expression significantly increased the percentage and size of mammary carcinoma observed, but was not sufficient to promote full penetrance of the tumorigenic phenotype. Molecular analysis suggest that tumors from double myrAKT;p53(R172H) mice result from acceleration of initiated p53(R172H) tumors and not from bypass of AKT-induced oncogenic senescence. Our work suggests that tumors are not the consequence of the bypass of senescence in MIN. We also show that AKT-induced oncogenic senescence is dependent of pRb but not of p53. Finally, our work also suggests that the cooperation observed between mutant p53 and activated AKT is due to AKT-induced acceleration of mutant p53-induced tumors. Finally, our work shows that levels of activated AKT are not essential in the induction of benign or premalignant tumors, or in the cooperation of AKT with other tumorigenic signal such as mutant p53, once AKT pathway is activated, the relative level of activity seems not to determine the phenotype.
Insights
Activated AKT signaling promotes breast preneoplasia, but its cooperation with mutant p53 accelerates existing tumors rather than bypassing senescence. AKT levels are not critical for benign or premalignant tumor induction.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Elevated AKT expression is common in breast cancer, often due to PTEN/PI3K pathway dysregulation.
- Understanding AKT's role in tumorigenesis is crucial for developing targeted therapies.
Purpose of the Study:
- To investigate the mechanistic basis of AKT gain-of-function in breast tumorigenesis.
- To quantitatively analyze the phenotype induced by activated AKT transgenes.
- To assess the impact of senescence checkpoints (p53, p27) on AKT-driven tumor promotion.
Main Methods:
- Generated transgenic mice expressing varying levels of constitutively active AKT in the mammary gland.
- Analyzed preneoplastic and neoplastic mammary lesions pathologically and molecularly.
- Crossed AKT transgenic lines with p53(R172H) mutant and p27 knockout mice.
- Assessed expression of proteins in the PI3K/AKT pathway and cellular senescence.
Main Results:
- Increased preneoplastic phenotype correlated with AKT signaling, unaffected by p27 or p53 loss.
- Combined myrAKT expression and p53(R172H) mutation increased mammary carcinoma percentage and size, but not full penetrance.
- Tumors in double myrAKT;p53(R172H) mice arose from accelerated p53(R172H) tumors, not bypass of AKT-induced oncogenic senescence.
- AKT-induced oncogenic senescence depends on pRb, not p53.
- Cooperation between mutant p53 and AKT involves AKT accelerating mutant p53-driven tumors.
Conclusions:
- Tumorigenesis is not solely a consequence of bypassing senescence.
- Activated AKT accelerates mutant p53-driven tumors, suggesting a cooperative mechanism.
- Relative AKT activity levels appear non-essential for benign/premalignant tumor induction or cooperation with other oncogenic signals once the AKT pathway is activated.
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