Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.

A change in chromosome number, known as aneuploidy, is a common characteristic of cancer. Aneuploidy disrupts gene expression in human cancer cells and immortalized human epithelial cells, but not in normal human cells. However, the relationship between aneuploidy and cancer remains unclear. To stud...

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Main Authors: Hisakatsu Nawata, Genro Kashino, Keizo Tano, Kazuhiro Daino, Yoshiya Shimada, Hiroyuki Kugoh, Mitsuo Oshimura, Masami Watanabe
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2011-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3183047?pdf=render
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spelling doaj-0358b9329afd4f8783c9611da93839582020-11-25T02:27:09ZengPublic Library of Science (PLoS)PLoS ONE1932-62032011-01-0169e2531910.1371/journal.pone.0025319Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.Hisakatsu NawataGenro KashinoKeizo TanoKazuhiro DainoYoshiya ShimadaHiroyuki KugohMitsuo OshimuraMasami WatanabeA change in chromosome number, known as aneuploidy, is a common characteristic of cancer. Aneuploidy disrupts gene expression in human cancer cells and immortalized human epithelial cells, but not in normal human cells. However, the relationship between aneuploidy and cancer remains unclear. To study the effects of aneuploidy in normal human cells, we generated artificial cells of human primary fibroblast having three chromosome 8 (trisomy 8 cells) by using microcell-mediated chromosome transfer technique. In addition to decreased proliferation, the trisomy 8 cells lost contact inhibition and reproliferated after exhibiting senescence-like characteristics that are typical of transformed cells. Furthermore, the trisomy 8 cells exhibited chromosome instability, and the overall gene expression profile based on microarray analyses was significantly different from that of diploid human primary fibroblasts. Our data suggest that aneuploidy, even a single chromosome gain, can be introduced into normal human cells and causes, in some cases, a partial cancer phenotype due to a disruption in overall gene expression.http://europepmc.org/articles/PMC3183047?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Hisakatsu Nawata
Genro Kashino
Keizo Tano
Kazuhiro Daino
Yoshiya Shimada
Hiroyuki Kugoh
Mitsuo Oshimura
Masami Watanabe
spellingShingle Hisakatsu Nawata
Genro Kashino
Keizo Tano
Kazuhiro Daino
Yoshiya Shimada
Hiroyuki Kugoh
Mitsuo Oshimura
Masami Watanabe
Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
PLoS ONE
author_facet Hisakatsu Nawata
Genro Kashino
Keizo Tano
Kazuhiro Daino
Yoshiya Shimada
Hiroyuki Kugoh
Mitsuo Oshimura
Masami Watanabe
author_sort Hisakatsu Nawata
title Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
title_short Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
title_full Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
title_fullStr Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
title_full_unstemmed Dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
title_sort dysregulation of gene expression in the artificial human trisomy cells of chromosome 8 associated with transformed cell phenotypes.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2011-01-01
description A change in chromosome number, known as aneuploidy, is a common characteristic of cancer. Aneuploidy disrupts gene expression in human cancer cells and immortalized human epithelial cells, but not in normal human cells. However, the relationship between aneuploidy and cancer remains unclear. To study the effects of aneuploidy in normal human cells, we generated artificial cells of human primary fibroblast having three chromosome 8 (trisomy 8 cells) by using microcell-mediated chromosome transfer technique. In addition to decreased proliferation, the trisomy 8 cells lost contact inhibition and reproliferated after exhibiting senescence-like characteristics that are typical of transformed cells. Furthermore, the trisomy 8 cells exhibited chromosome instability, and the overall gene expression profile based on microarray analyses was significantly different from that of diploid human primary fibroblasts. Our data suggest that aneuploidy, even a single chromosome gain, can be introduced into normal human cells and causes, in some cases, a partial cancer phenotype due to a disruption in overall gene expression.
url http://europepmc.org/articles/PMC3183047?pdf=render
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