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Published on: February 3, 2012
Aberrations of the CHK2 gene are rare in pediatric solid tumors
Yu Yan Chen1, Junko Takita, Kiyoshi Tanaka
1Department of Pediatrics, Graduate School of Medicine, University of Tokyo, Tokyo 113-8655, Japan.
Abstract:
In pediatric solid tumors, such as neuroblastoma (NB), it has been reported that the frequency of TP53 gene alterations is lower than that in adult tumors, suggesting that other tumor suppressor genes may play more important roles in the development of pediatric solid tumors. The CHK2 gene, whose product is a checkpoint kinase that plays a central role in DNA damage response and acts upstream of TP53, has been found to be mutated in a subset of Li-Fraumeni syndrome without mutations of TP53 and in some other sporadic human tumors, earmarking this serine/threonine kinase as a candidate tumor suppressor gene. Thus, we analyzed the CHK2 gene to address whether it is a candidate tumor suppressor gene for pediatric solid tumors. We screened for mutations of the CHK2 gene in 25 NB, 8 rhbdomyosarcoma, 12 Ewing sarcoma, and 26 other pediatric solid tumor cell lines as well as 77 fresh tumors including two cases of multiple cancers. Using polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) analysis and reverse transcriptase (RT)-PCR-SSCP followed by direct sequence analysis, we detected only one missense mutation (S505T) in one NB cell line and two silent mutations in one NB cell line and one NB fresh tumor, respectively. Through RT-PCR and subcloning analysis, we detected a similar expression of the CHK2 gene in all of the NB cell lines and fresh tumors; however, we identified at least three isoforms of the CHK2 gene, two of which have not been reported previously. These results suggest that aberrations of the CHK2 gene are rare in pediatric solid tumors.
Insights
CHK2 gene aberrations are rare in pediatric solid tumors, suggesting other tumor suppressors are more critical. Researchers investigated CHK2 mutations and expression in neuroblastoma and other pediatric cancers, finding limited genetic alterations.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Pediatric solid tumors like neuroblastoma (NB) show fewer TP53 gene alterations than adult tumors.
- This suggests alternative tumor suppressor genes may be crucial in pediatric cancer development.
- CHK2 kinase, involved in DNA damage response and upstream of TP53, is a candidate tumor suppressor.
Purpose of the Study:
- To investigate if the CHK2 gene functions as a tumor suppressor in pediatric solid tumors.
- To screen for CHK2 gene mutations and analyze its expression patterns in various pediatric cancers.
Main Methods:
- Screening for CHK2 mutations using polymerase chain reaction-single-strand conformation polymorphism (PCR-SSCP) and reverse transcriptase (RT)-PCR-SSCP.
- Direct sequencing analysis to identify mutations.
- RT-PCR and subcloning to analyze CHK2 gene expression and identify isoforms.
Main Results:
- Only one missense mutation (S505T) and two silent mutations were detected across all samples.
- CHK2 gene expression was similar in neuroblastoma cell lines and tumors.
- At least three CHK2 gene isoforms were identified, including two novel ones.
Conclusions:
- Genetic aberrations of the CHK2 gene appear to be infrequent in pediatric solid tumors.
- The findings suggest CHK2 is unlikely to be a major driver in the pathogenesis of these cancers.
- Further research into other tumor suppressor genes is warranted for pediatric solid tumors.
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