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Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()

Chromosomal aneuploidy is a defining feature of epithelial cancers. The pattern of aneuploidies is cancer-type specific. For instance, the gain of chromosome 13 occurs almost exclusively in colorectal cancer. We used microcell-mediated chromosome transfer to generate gains of chromosome 13 in the di...

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Autores principales: Wangsa, Darawalee, Braun, Rüdiger, Stuelten, Christina H., Brown, Markus, Bauer, Kerry M., Emons, Georg, Weston, Leigh A., Hu, Yue, Yang, Howard H., Vila-Casadesús, Maria, Lee, Maxwell P., Brauer, Philip, Warner, Lidia, Upender, Madhvi, Hummon, Amanda B., Camps, Jordi, Ried, Thomas
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Neoplasia Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6551473/
https://www.ncbi.nlm.nih.gov/pubmed/31174021
http://dx.doi.org/10.1016/j.neo.2019.04.009
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author Wangsa, Darawalee
Braun, Rüdiger
Stuelten, Christina H.
Brown, Markus
Bauer, Kerry M.
Emons, Georg
Weston, Leigh A.
Hu, Yue
Yang, Howard H.
Vila-Casadesús, Maria
Lee, Maxwell P.
Brauer, Philip
Warner, Lidia
Upender, Madhvi
Hummon, Amanda B.
Camps, Jordi
Ried, Thomas
author_facet Wangsa, Darawalee
Braun, Rüdiger
Stuelten, Christina H.
Brown, Markus
Bauer, Kerry M.
Emons, Georg
Weston, Leigh A.
Hu, Yue
Yang, Howard H.
Vila-Casadesús, Maria
Lee, Maxwell P.
Brauer, Philip
Warner, Lidia
Upender, Madhvi
Hummon, Amanda B.
Camps, Jordi
Ried, Thomas
author_sort Wangsa, Darawalee
collection PubMed
description Chromosomal aneuploidy is a defining feature of epithelial cancers. The pattern of aneuploidies is cancer-type specific. For instance, the gain of chromosome 13 occurs almost exclusively in colorectal cancer. We used microcell-mediated chromosome transfer to generate gains of chromosome 13 in the diploid human colorectal cancer cell line DLD-1. Extra copies of chromosome 13 resulted in a significant and reproducible up-regulation of transcript levels of genes on chromosome 13 (P = .0004, FDR = 0.01) and a genome-wide transcriptional deregulation in all 8 independent clones generated. Genes contained in two clusters were particularly affected: the first cluster on cytoband 13q13 contained 7 highly up-regulated genes (NBEA, MAB21L1, DCLK1, SOHLH2, CCDC169, SPG20 and CCNA1, P = .0003) in all clones. A second cluster was located on 13q32.1 and contained five upregulated genes (ABCC4, CLDN10, DZIP1, DNAJC3 and UGGT2, P = .003). One gene, RASL11A, localized on chromosome band 13q12.2, escaped the copy number-induced overexpression and was reproducibly and significantly down-regulated on the mRNA and protein level (P = .0001, FDR = 0.002). RASL11A expression levels were also lower in primary colorectal tumors as compared to matched normal mucosa (P = .0001, FDR = 0.0001. Overexpression of RASL11A increases cell proliferation and anchorage independent growth while decreasing cell migration in +13 clones. In summary, we observed a strict correlation of genomic copy number and resident gene expression levels, and aneuploidy dependent consistent genome-wide transcriptional deregulation.
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spelling pubmed-65514732019-06-10 Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells() Wangsa, Darawalee Braun, Rüdiger Stuelten, Christina H. Brown, Markus Bauer, Kerry M. Emons, Georg Weston, Leigh A. Hu, Yue Yang, Howard H. Vila-Casadesús, Maria Lee, Maxwell P. Brauer, Philip Warner, Lidia Upender, Madhvi Hummon, Amanda B. Camps, Jordi Ried, Thomas Neoplasia Original article Chromosomal aneuploidy is a defining feature of epithelial cancers. The pattern of aneuploidies is cancer-type specific. For instance, the gain of chromosome 13 occurs almost exclusively in colorectal cancer. We used microcell-mediated chromosome transfer to generate gains of chromosome 13 in the diploid human colorectal cancer cell line DLD-1. Extra copies of chromosome 13 resulted in a significant and reproducible up-regulation of transcript levels of genes on chromosome 13 (P = .0004, FDR = 0.01) and a genome-wide transcriptional deregulation in all 8 independent clones generated. Genes contained in two clusters were particularly affected: the first cluster on cytoband 13q13 contained 7 highly up-regulated genes (NBEA, MAB21L1, DCLK1, SOHLH2, CCDC169, SPG20 and CCNA1, P = .0003) in all clones. A second cluster was located on 13q32.1 and contained five upregulated genes (ABCC4, CLDN10, DZIP1, DNAJC3 and UGGT2, P = .003). One gene, RASL11A, localized on chromosome band 13q12.2, escaped the copy number-induced overexpression and was reproducibly and significantly down-regulated on the mRNA and protein level (P = .0001, FDR = 0.002). RASL11A expression levels were also lower in primary colorectal tumors as compared to matched normal mucosa (P = .0001, FDR = 0.0001. Overexpression of RASL11A increases cell proliferation and anchorage independent growth while decreasing cell migration in +13 clones. In summary, we observed a strict correlation of genomic copy number and resident gene expression levels, and aneuploidy dependent consistent genome-wide transcriptional deregulation. Neoplasia Press 2019-06-04 /pmc/articles/PMC6551473/ /pubmed/31174021 http://dx.doi.org/10.1016/j.neo.2019.04.009 Text en © 2019 Published by Elsevier Inc. on behalf of Neoplasia Press, Inc. http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original article
Wangsa, Darawalee
Braun, Rüdiger
Stuelten, Christina H.
Brown, Markus
Bauer, Kerry M.
Emons, Georg
Weston, Leigh A.
Hu, Yue
Yang, Howard H.
Vila-Casadesús, Maria
Lee, Maxwell P.
Brauer, Philip
Warner, Lidia
Upender, Madhvi
Hummon, Amanda B.
Camps, Jordi
Ried, Thomas
Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title_full Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title_fullStr Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title_full_unstemmed Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title_short Induced Chromosomal Aneuploidy Results in Global and Consistent Deregulation of the Transcriptome of Cancer Cells()
title_sort induced chromosomal aneuploidy results in global and consistent deregulation of the transcriptome of cancer cells()
topic Original article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6551473/
https://www.ncbi.nlm.nih.gov/pubmed/31174021
http://dx.doi.org/10.1016/j.neo.2019.04.009
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