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Yeast As a Chassis for Developing Functional Assays to Study Human P53
Published on: August 4, 2019
RB and p53 cooperate to prevent liver tumorigenesis in response to tissue damage
A Kathleen McClendon1, Jeffry L Dean, Adam Ertel
1Department of Cancer Biology, Thomas Jefferson University, Philadelphia, Pennsylvania 19107, USA.
Background & Aims:
The tumor suppressors retinoblastoma (RB) and p53 are important regulators of the cell cycle. Although human cancer cells inactivate RB and p53 by many mechanisms, the cooperative roles of these proteins in tumorigenesis are complex and tissue specific. We analyzed the cooperation of RB and p53 in liver development and pathogenesis of hepatocellular carcinoma.
Methods:
Spontaneous and carcinogen-induced (diethylnitrosamine) tumorigenesis were studied in mice with liver-specific deletions of Rb and/or p53 (Rbf/f;albcre+, p53f/f;albcre+ and Rbf/f; p53f/f;albcre+ mice). Genotype, histologic, immunohistochemical, microarray, quantitative polymerase chain reaction, immunoblot, and comparative genomic hybridization analyses were performed using normal and tumor samples. Comparative microarray analyses were performed against publicly available human microarray data sets.
Results:
Deletion of RB and p53 from livers of mice deregulated the transcriptional programs associated with human disease. These changes were not sufficient for spontaneous tumorigenesis; potent quiescence mechanisms compensated for loss of these tumor suppressors. In response to hepatocarcinogen-induced damage, distinct and cooperative roles of RB and p53 were revealed; their loss affected cell cycle control, checkpoint response, and genome stability. In damaged tissue, combined loss of RB and p53 resulted in early lesion formation, aggressive tumor progression, and gene expression signatures and histologic characteristics of advanced human hepatocellular carcinoma.
Conclusions:
The effects RB and p53 loss are determined by the tissue environment; cell stresses that promote aggressive disease reveal the functions of these tumor suppressors.
Insights
Loss of tumor suppressors retinoblastoma (RB) and p53 in mice liver promotes hepatocellular carcinoma. Their combined loss accelerates tumor development and progression, especially under stress, revealing critical roles in cell cycle regulation and genome stability.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Retinoblastoma (RB) and p53 are key tumor suppressors regulating the cell cycle.
- Their inactivation is common in human cancers, but their cooperative roles in tumorigenesis are complex and tissue-specific.
- Understanding RB and p53 cooperation is crucial for liver cancer pathogenesis.
Purpose of the Study:
- To investigate the cooperative roles of RB and p53 in liver development.
- To analyze their roles in the pathogenesis of hepatocellular carcinoma (HCC).
Main Methods:
- Used genetically engineered mice with liver-specific deletions of Rb and/or p53.
- Studied spontaneous and diethylnitrosamine-induced tumorigenesis.
- Employed histological, immunohistochemical, microarray, qPCR, immunoblot, and CGH analyses.
Main Results:
- RB and p53 loss deregulated transcriptional programs relevant to human HCC.
- Loss of these suppressors alone did not cause spontaneous tumors due to compensatory quiescence mechanisms.
- Combined RB and p53 loss in damaged liver led to early lesions, aggressive tumor progression, and HCC-like gene expression and histology.
Conclusions:
- The functional impact of RB and p53 loss is context-dependent on the tissue environment.
- Cellular stresses that drive aggressive disease unmask the critical functions of these tumor suppressors.
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