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γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells

The nevoid basal cell carcinoma syndrome (NBCCS) is an autosomal dominant disorder characterized by nevi, palmar and plantar pits, falx calcification, vertebrate anomalies and basal cell carcinomas. It is well known in NBCCS that γ‐irradiation to the skin induces basal cell carcinomas or causes an e...

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Autores principales: Fujii, Katsunori, Miyashita, Toshiyuki, Takanashi, Jun‐ichi, Sugita, Katsuo, Kohno, Yoichi, Nishie, Haruko, Yasumoto, Shin‐ichiro, Furue, Masutaka, Yamada, Masao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Blackwell Publishing Ltd 1999
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926024/
https://www.ncbi.nlm.nih.gov/pubmed/10665653
http://dx.doi.org/10.1111/j.1349-7006.1999.tb00719.x
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author Fujii, Katsunori
Miyashita, Toshiyuki
Takanashi, Jun‐ichi
Sugita, Katsuo
Kohno, Yoichi
Nishie, Haruko
Yasumoto, Shin‐ichiro
Furue, Masutaka
Yamada, Masao
author_facet Fujii, Katsunori
Miyashita, Toshiyuki
Takanashi, Jun‐ichi
Sugita, Katsuo
Kohno, Yoichi
Nishie, Haruko
Yasumoto, Shin‐ichiro
Furue, Masutaka
Yamada, Masao
author_sort Fujii, Katsunori
collection PubMed
description The nevoid basal cell carcinoma syndrome (NBCCS) is an autosomal dominant disorder characterized by nevi, palmar and plantar pits, falx calcification, vertebrate anomalies and basal cell carcinomas. It is well known in NBCCS that γ‐irradiation to the skin induces basal cell carcinomas or causes an enlargement of the tumor size, although the details of the mechanism remain unknown. We have established lymphoblastoid cell lines from three NBCCS patients, and we present here the first evidence of abnormal cell cycle and apoptosis regulations. A novel mutation (single nucleotide deletion) in the coding region of the human patched gene, PTCH, was identified in two sibling patients, but no apparent abnormalities were detected in the gene of the remaining patient. Nevertheless, the three established cell lines showed similar features in the following analyses. Flow cytometric analyses revealed that the NBCCS‐derived cells were accumulated in the G(2)M phase after γ‐irradiation, whereas normal cells showed cell cycle arrest both in the G(0)G(1) and G(2)M phases. The fraction of apoptotic cells after γ‐irradiation was smaller in the NBCCS cells. The level of p27 expression markedly decreased after γ‐irradiation in the NBCCS cells, although the effects of the irradiation on the expression profiles for p53, p21 and Rb did not differ in normal and NBCCS cells. These findings may provide a clue to the molecular mechanisms of tumorigenesis in NBCCS.
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spelling pubmed-59260242018-05-11 γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells Fujii, Katsunori Miyashita, Toshiyuki Takanashi, Jun‐ichi Sugita, Katsuo Kohno, Yoichi Nishie, Haruko Yasumoto, Shin‐ichiro Furue, Masutaka Yamada, Masao Jpn J Cancer Res Article The nevoid basal cell carcinoma syndrome (NBCCS) is an autosomal dominant disorder characterized by nevi, palmar and plantar pits, falx calcification, vertebrate anomalies and basal cell carcinomas. It is well known in NBCCS that γ‐irradiation to the skin induces basal cell carcinomas or causes an enlargement of the tumor size, although the details of the mechanism remain unknown. We have established lymphoblastoid cell lines from three NBCCS patients, and we present here the first evidence of abnormal cell cycle and apoptosis regulations. A novel mutation (single nucleotide deletion) in the coding region of the human patched gene, PTCH, was identified in two sibling patients, but no apparent abnormalities were detected in the gene of the remaining patient. Nevertheless, the three established cell lines showed similar features in the following analyses. Flow cytometric analyses revealed that the NBCCS‐derived cells were accumulated in the G(2)M phase after γ‐irradiation, whereas normal cells showed cell cycle arrest both in the G(0)G(1) and G(2)M phases. The fraction of apoptotic cells after γ‐irradiation was smaller in the NBCCS cells. The level of p27 expression markedly decreased after γ‐irradiation in the NBCCS cells, although the effects of the irradiation on the expression profiles for p53, p21 and Rb did not differ in normal and NBCCS cells. These findings may provide a clue to the molecular mechanisms of tumorigenesis in NBCCS. Blackwell Publishing Ltd 1999-12 /pmc/articles/PMC5926024/ /pubmed/10665653 http://dx.doi.org/10.1111/j.1349-7006.1999.tb00719.x Text en
spellingShingle Article
Fujii, Katsunori
Miyashita, Toshiyuki
Takanashi, Jun‐ichi
Sugita, Katsuo
Kohno, Yoichi
Nishie, Haruko
Yasumoto, Shin‐ichiro
Furue, Masutaka
Yamada, Masao
γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title_full γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title_fullStr γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title_full_unstemmed γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title_short γ‐Irradiation Deregulates Cell Cycle Control and Apoptosis in Nevoid Basal Cell Carcinoma Syndrome‐derived Cells
title_sort γ‐irradiation deregulates cell cycle control and apoptosis in nevoid basal cell carcinoma syndrome‐derived cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5926024/
https://www.ncbi.nlm.nih.gov/pubmed/10665653
http://dx.doi.org/10.1111/j.1349-7006.1999.tb00719.x
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