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Real-time Imaging of Myeloid Cells Dynamics in ApcMin/+ Intestinal Tumors by Spinning Disk Confocal Microscopy
Published on: October 6, 2014
Newly discovered genomic mutation patterns in radiation-induced small intestinal tumors of ApcMin/+ mice
Daisuke Iizuka1,2, Megumi Sasatani2, Atsuko Ishikawa1
1Department of Radiation Effects Research, Institute for Radiological Science, National Institutes for Quantum Science and Technology, Chiba, Japan.
Abstract:
Among the small intestinal tumors that occur in irradiated mice of the established mouse model B6/B6-Chr18MSM-F1 ApcMin/+, loss of heterozygosity analysis can be utilized to estimate whether a deletion in the wild-type allele containing the Adenomatous polyposis coli (Apc) region (hereafter referred to as Deletion), a duplication in the mutant allele with a nonsense mutation at codon 850 of Apc (Duplication), or no aberration (Unidentified) has occurred. Previous research has revealed that the number of Unidentified tumors tends to increase with the radiation dose. In the present study, we investigated the molecular mechanisms underlying the development of an Unidentified tumor type in response to radiation exposure. The mRNA expression levels of Apc were significantly lower in Unidentified tumors than in normal tissues. We focused on epigenetic suppression as the mechanism underlying this decreased expression; however, hypermethylation of the Apc promoter region was not observed. To investigate whether deletions occur that cannot be captured by loss of heterozygosity analysis, we analyzed chromosome 18 using a customized array comparative genomic hybridization approach designed to detect copy-number changes in chromosome 18. However, the copy number of the Apc region was not altered in Unidentified tumors. Finally, gene mutation analysis of the Apc region using next-generation sequencing suggested the existence of a small deletion (approximately 3.5 kbp) in an Unidentified tumor from a mouse in the irradiated group. Furthermore, nonsense and frameshift mutations in Apc were found in approximately 30% of the Unidentified tumors analyzed. These results suggest that radiation-induced Unidentified tumors arise mainly due to decreased Apc expression of an unknown regulatory mechanism that does not depend on promoter hypermethylation, and that some tumors may result from nonsense mutations which are as-yet undefined point mutations.
Insights
Radiation exposure increases unidentified small intestinal tumors. These tumors show decreased Adenomatous polyposis coli (Apc) expression due to unknown mechanisms, not promoter hypermethylation, with some arising from Apc mutations.
Area of Science:
- Oncology
- Genetics
- Radiation Biology
Background:
- Small intestinal tumors in ApcMin/+ mice can be classified by Adenomatous polyposis coli (Apc) gene aberrations.
- Previous studies link increased radiation dose to a higher incidence of 'Unidentified' tumors.
- The molecular basis for these radiation-induced Unidentified tumors remains unclear.
Purpose of the Study:
- To investigate the molecular mechanisms driving the development of radiation-induced Unidentified small intestinal tumors.
- To determine the role of Apc gene expression and alterations in Unidentified tumor formation.
Main Methods:
- Analysis of Apc mRNA expression levels in tumors and normal tissues.
- Investigation of Apc promoter methylation.
- Chromosomal analysis using array comparative genomic hybridization (aCGH) for chromosome 18.
- Next-generation sequencing (NGS) for Apc gene mutation analysis.
Main Results:
- Apc mRNA expression was significantly lower in Unidentified tumors compared to normal tissues.
- No hypermethylation of the Apc promoter region was detected.
- aCGH analysis showed no copy number alterations in the Apc region.
- NGS identified a small deletion in Apc in one Unidentified tumor and found nonsense/frameshift mutations in Apc in approximately 30% of analyzed tumors.
Conclusions:
- Radiation-induced Unidentified tumors primarily result from decreased Apc expression via an unknown regulatory mechanism, independent of promoter hypermethylation.
- A subset of these tumors may arise from undefined point mutations, including nonsense mutations, within the Apc gene.
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