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SV40 and cell cycle perturbations in malignant mesothelioma
1Human Genetics Program, Fox Chase Cancer Center, Philadelphia, PA 19111, USA. JR.Testa@fccc.edu
Abstract:
Although epidemiological findings have established that exposure to asbestos fibers is the major cause of malignant mesothelioma (MM), recent studies have implicated simian virus 40 (SV40) in the etiology of some of these tumors. Cytogenetic and molecular genetic evidence suggests that multiple somatic genetic events are required for tumorigenic conversion of a mesothelial cell. As with many other types of cancer, in MM critical oncogenic events exert their action via perturbations of the cell cycle. Interactions between the retinoblastoma (Rb) family of proteins and oncoproteins encoded by SV40 lead to cell cycle alterations. Likewise, inhibition of the p53 tumor suppressor by SV40 can inactivate a crucial cell cycle checkpoint, thereby permitting cells to undergo mitosis regardless of the presence of DNA damage. Many MMs exhibit loss and/or inactivation of the tumor suppressors p16(INK4a)and p14(ARF), components of the pRb and p53 cell cycle regulatory pathways, respectively. Recent investigations have demonstrated that SV40 large T antigen, isolated from frozen biopsies of human MM specimens, binds to and inactivates various tumor suppressor gene products such as pRb and p53. In this review, we discuss how SV40-oncosuppressor interactions can lead to functional alterations of the pRb- and p53-dependent cell cycle regulatory pathways and thereby contribute to neoplastic transformation of human mesothelial cells.
Insights
Simian virus 40 (SV40) may contribute to malignant mesothelioma (MM) by disrupting cell cycle regulation. SV40 oncoproteins interact with tumor suppressors like pRb and p53, potentially driving MM development.
Area of Science:
- Oncology
- Virology
- Molecular Biology
Background:
- Malignant mesothelioma (MM) is primarily linked to asbestos exposure.
- Emerging evidence suggests Simian Virus 40 (SV40) involvement in some MM cases.
- Tumorigenesis requires multiple genetic events, including cell cycle deregulation.
Purpose of the Study:
- To review the role of SV40 in malignant mesothelioma etiology.
- To explore SV40's interaction with cell cycle regulatory pathways.
- To discuss how SV40 contributes to mesothelial cell neoplastic transformation.
Main Methods:
- Review of epidemiological and molecular genetic studies.
- Analysis of SV40 oncoprotein interactions with tumor suppressors (pRb, p53).
- Examination of genetic alterations in MM, including p16(INK4a) and p14(ARF) inactivation.
Main Results:
- SV40 oncoproteins interact with the retinoblastoma (Rb) protein family, altering cell cycle control.
- SV40 inhibits the p53 tumor suppressor, compromising cell cycle checkpoints.
- SV40 large T antigen binds to and inactivates pRb and p53 in human MM specimens.
- Inactivation of p16(INK4a) and p14(ARF), key cell cycle regulators, is common in MM.
Conclusions:
- SV40-oncosuppressor interactions disrupt pRb- and p53-dependent cell cycle pathways.
- These disruptions contribute to the neoplastic transformation of human mesothelial cells.
- SV40 is a potential etiological factor in a subset of malignant mesothelioma cases.