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MCT-1 oncogene downregulates p53 and destabilizes genome structure in the response to DNA double-strand damage
Hsin-Ling Hsu1, Chik On Choy, Ravi Kasiappan
1National Health Research Institutes, No. 35, Keyan Road, Zhunan Town, Miaoli County 350, Taiwan, ROC. hsinling88@nhri.org.tw
Abstract:
Tumor suppressor p53 protein mediates checkpoint controls and the apoptotic program that are critical for maintaining genomic integrity and preventing tumorigenesis. Forced-induction of MCT-1 decreased p53 expression before and after genomic insults. While inhibiting protein synthesis, the levels of ubiquinated-p53 and the phospho-MDMA2 were significantly increased in ectopic MCT-1 cells. Abrogation of the proteosome degradation process attenuated p53 destabilization and p21 down-regulation by MCT-1. Concomitantly, MCT-1 overexpression enhanced the phosphorylation status of MAPK (ERK1/ERK2). While MCT-1 gene knockdown or MEK/ERK pathway inhibition dramatically reduced MAPK phosphorylation, the genotoxin-induced p53 and p21 production were noticeably elevated. Upon Etoposide treatment, ectopic MCT-1 cells relaxed S-phase and G2/M checkpoints followed by G1 phase progressing. Moreover, cells inducing with MCT-1 abridged accumulations of G2/M populations in the response to gamma-irradiation. The polyploidy (DNA content>4N) populations were increased in association with p53 loss in MCT-1 oncogenic cells. Alkaline comet assay validated that ectopic MCT-1 cells were less susceptibility to the genotoxicity. Furthermore, the allocation of nuclear MCT-1 induced by the genotoxic stress was moderately coincided with gamma-H2AX appearances. Throughout damage-repairing process, ectopic MCT-1 cells displayed many larger chromosomes and multiple chromosomal fusions compared to the controls that showed increase in chromosomal breaks/gaps and minute chromosomal fragments. Spectral karyotyping analysis precisely identified the acquisition of a single extra copy of chromosome 14 together with a complex genome organizations in ectopic MCT-1 cells, including extra copies of chromosome segments that had been translocated to derivative chromosomes 6 [der(6)] and 9 [der(9)]. In conclusion, MCT-1 deregulates p53-p21 network and impairs the damage checkpoints those are robustly connected to oncogenic chromosomal abnormalities.
Insights
MCT-1 oncogene disrupts the p53-p21 pathway, impairing DNA damage checkpoints and leading to genomic instability and chromosomal abnormalities. This deregulation contributes to tumorigenesis by compromising cellular defense mechanisms.
Area of Science:
- Molecular Biology
- Cell Biology
- Cancer Research
Background:
- The p53 protein is a critical tumor suppressor involved in genomic integrity maintenance.
- Dysregulation of p53 and its associated pathways are hallmarks of cancer.
- The role of MCT-1 in p53 regulation and its impact on genomic stability requires further elucidation.
Purpose of the Study:
- To investigate the effect of MCT-1 on the p53-p21 pathway and DNA damage response.
- To explore the consequences of MCT-1 overexpression on cell cycle checkpoints and genomic integrity.
- To determine the relationship between MCT-1, p53 destabilization, and oncogenic chromosomal abnormalities.
Main Methods:
- Forced induction of MCT-1 in cells.
- Analysis of p53 and p21 protein levels, ubiquitination, and degradation.
- Assessment of MAPK (ERK1/ERK2) phosphorylation.
- Cell cycle analysis using flow cytometry.
- Genotoxicity assays (alkaline comet assay).
- Chromosomal analysis (spectral karyotyping).
Main Results:
- MCT-1 overexpression decreased p53 expression and promoted its ubiquitination and proteasomal degradation.
- MCT-1 enhanced MAPK (ERK1/ERK2) phosphorylation, while its inhibition elevated p53 and p21 levels.
- Cells overexpressing MCT-1 exhibited relaxed S-phase and G2/M checkpoints, increased polyploidy, and reduced susceptibility to genotoxicity.
- MCT-1 overexpression led to significant chromosomal abnormalities, including aneuploidy and complex rearrangements.
Conclusions:
- MCT-1 deregulates the p53-p21 network, impairing critical DNA damage checkpoints.
- The disruption of these checkpoints by MCT-1 contributes to genomic instability and the development of oncogenic chromosomal abnormalities.
- MCT-1 acts as an oncogene by compromising cellular defense mechanisms against DNA damage.
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