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Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice

Recent studies have identified interstitial deletions in the cancer genome as a radiation-related mutational signature, although most of them do not fall on cancer driver genes. Pioneering studies in the field have indicated the presence of loss of heterozygosity (LOH) spanning Apc in a subset of sp...

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Autores principales: Yanagihara, Hiromi, Morioka, Takamitsu, Yamazaki, Shunsuke, Yamada, Yutaka, Tachibana, Hirotaka, Daino, Kazuhiro, Tsuruoka, Chizuru, Amasaki, Yoshiko, Kaminishi, Mutsumi, Imaoka, Tatsuhiko, Kakinuma, Shizuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10215001/
https://www.ncbi.nlm.nih.gov/pubmed/37117033
http://dx.doi.org/10.1093/jrr/rrad021
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author Yanagihara, Hiromi
Morioka, Takamitsu
Yamazaki, Shunsuke
Yamada, Yutaka
Tachibana, Hirotaka
Daino, Kazuhiro
Tsuruoka, Chizuru
Amasaki, Yoshiko
Kaminishi, Mutsumi
Imaoka, Tatsuhiko
Kakinuma, Shizuko
author_facet Yanagihara, Hiromi
Morioka, Takamitsu
Yamazaki, Shunsuke
Yamada, Yutaka
Tachibana, Hirotaka
Daino, Kazuhiro
Tsuruoka, Chizuru
Amasaki, Yoshiko
Kaminishi, Mutsumi
Imaoka, Tatsuhiko
Kakinuma, Shizuko
author_sort Yanagihara, Hiromi
collection PubMed
description Recent studies have identified interstitial deletions in the cancer genome as a radiation-related mutational signature, although most of them do not fall on cancer driver genes. Pioneering studies in the field have indicated the presence of loss of heterozygosity (LOH) spanning Apc in a subset of sporadic and radiation-induced intestinal tumors of Apc(Min)(/+) mice, albeit with a substantial subset in which LOH was not detected; whether copy number losses accompany such LOH has also been unclear. Herein, we analyzed intestinal tumors of C3B6F1 Apc(Min)(/+) mice that were either left untreated or irradiated with 2 Gy of γ-rays. We observed intratumor mosaicism with respect to the nuclear/cytoplasmic accumulation of immunohistochemically detectable β-catenin, which is a hallmark of Apc(+) allele loss. An immunoguided laser microdissection approach enabled the detection of LOH involving the Apc(+) allele in β-catenin-overexpressing cells; in contrast, the LOH was not observed in the non-overexpressing cells. With this improvement, LOH involving Apc(+) was detected in all 22 tumors analyzed, in contrast to what has been reported previously. The use of a formalin-free fixative facilitated the LOH and microarray-based DNA copy number analyses, enabling the classification of the aberrations as nondisjunction/mitotic recombination type or interstitial deletion type. Of note, the latter was observed only in radiation-induced tumors (nonirradiated, 0 of 8; irradiated, 11 of 14). Thus, an analysis considering intratumor heterogeneity identifies interstitial deletion involving the Apc(+) allele as a causative radiation-related event in intestinal tumors of Apc(Min)(/+) mice, providing an accurate approach for attributing individual tumors to radiation exposure.
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spelling pubmed-102150012023-05-27 Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice Yanagihara, Hiromi Morioka, Takamitsu Yamazaki, Shunsuke Yamada, Yutaka Tachibana, Hirotaka Daino, Kazuhiro Tsuruoka, Chizuru Amasaki, Yoshiko Kaminishi, Mutsumi Imaoka, Tatsuhiko Kakinuma, Shizuko J Radiat Res Regular paper Recent studies have identified interstitial deletions in the cancer genome as a radiation-related mutational signature, although most of them do not fall on cancer driver genes. Pioneering studies in the field have indicated the presence of loss of heterozygosity (LOH) spanning Apc in a subset of sporadic and radiation-induced intestinal tumors of Apc(Min)(/+) mice, albeit with a substantial subset in which LOH was not detected; whether copy number losses accompany such LOH has also been unclear. Herein, we analyzed intestinal tumors of C3B6F1 Apc(Min)(/+) mice that were either left untreated or irradiated with 2 Gy of γ-rays. We observed intratumor mosaicism with respect to the nuclear/cytoplasmic accumulation of immunohistochemically detectable β-catenin, which is a hallmark of Apc(+) allele loss. An immunoguided laser microdissection approach enabled the detection of LOH involving the Apc(+) allele in β-catenin-overexpressing cells; in contrast, the LOH was not observed in the non-overexpressing cells. With this improvement, LOH involving Apc(+) was detected in all 22 tumors analyzed, in contrast to what has been reported previously. The use of a formalin-free fixative facilitated the LOH and microarray-based DNA copy number analyses, enabling the classification of the aberrations as nondisjunction/mitotic recombination type or interstitial deletion type. Of note, the latter was observed only in radiation-induced tumors (nonirradiated, 0 of 8; irradiated, 11 of 14). Thus, an analysis considering intratumor heterogeneity identifies interstitial deletion involving the Apc(+) allele as a causative radiation-related event in intestinal tumors of Apc(Min)(/+) mice, providing an accurate approach for attributing individual tumors to radiation exposure. Oxford University Press 2023-04-28 /pmc/articles/PMC10215001/ /pubmed/37117033 http://dx.doi.org/10.1093/jrr/rrad021 Text en © The Author(s) 2023. Published by Oxford University Press on behalf of The Japanese Radiation Research Society and Japanese Society for Radiation Oncology. https://creativecommons.org/licenses/by/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Regular paper
Yanagihara, Hiromi
Morioka, Takamitsu
Yamazaki, Shunsuke
Yamada, Yutaka
Tachibana, Hirotaka
Daino, Kazuhiro
Tsuruoka, Chizuru
Amasaki, Yoshiko
Kaminishi, Mutsumi
Imaoka, Tatsuhiko
Kakinuma, Shizuko
Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title_full Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title_fullStr Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title_full_unstemmed Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title_short Interstitial deletion of the Apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in C3B6F1 Apc(Min)(/+) mice
title_sort interstitial deletion of the apc locus in β-catenin-overexpressing cells is a signature of radiation-induced intestinal tumors in c3b6f1 apc(min)(/+) mice
topic Regular paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10215001/
https://www.ncbi.nlm.nih.gov/pubmed/37117033
http://dx.doi.org/10.1093/jrr/rrad021
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