Literature DB >> 15466185

Chromosome transfer induced aneuploidy results in complex dysregulation of the cellular transcriptome in immortalized and cancer cells.

Madhvi B Upender1, Jens K Habermann, Lisa M McShane, Edward L Korn, J Carl Barrett, Michael J Difilippantonio, Thomas Ried.   

Abstract

Chromosomal aneuploidies are observed in essentially all sporadic carcinomas. These aneuploidies result in tumor-specific patterns of genomic imbalances that are acquired early during tumorigenesis, continuously selected for and faithfully maintained in cancer cells. Although the paradigm of translocation induced oncogene activation in hematologic malignancies is firmly established, it is not known how genomic imbalances affect chromosome-specific gene expression patterns in particular and how chromosomal aneuploidy dysregulates the genetic equilibrium of cells in general. To model specific chromosomal aneuploidies in cancer cells and dissect the immediate consequences of genomic imbalances on the transcriptome, we generated artificial trisomies in a karyotypically stable diploid yet mismatch repair-deficient, colorectal cancer cell line and in telomerase immortalized, cytogenetically normal human breast epithelial cells using microcell-mediated chromosome transfer. The global consequences on gene expression levels were analyzed using cDNA arrays. Our results show that regardless of chromosome or cell type, chromosomal trisomies result in a significant increase in the average transcriptional activity of the trisomic chromosome. This increase affects the expression of numerous genes on other chromosomes as well. We therefore postulate that the genomic imbalances observed in cancer cells exert their effect through a complex pattern of transcriptional dysregulation.

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Year:  2004        PMID: 15466185      PMCID: PMC4772432          DOI: 10.1158/0008-5472.CAN-04-0474

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  44 in total

1.  Global up-regulation of chromosome 21 gene expression in the developing Down syndrome brain.

Authors:  Rong Mao; Carol L Zielke; H Ronald Zielke; Jonathan Pevsner
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2.  Objective method of comparing DNA microarray image analysis systems.

Authors:  Edward L Korn; Jens K Habermann; Madhvi B Upender; Thomas Ried; Lisa M McShane
Journal:  Biotechniques       Date:  2004-06       Impact factor: 1.993

3.  Expression profiling reveals fundamental biological differences in acute myeloid leukemia with isolated trisomy 8 and normal cytogenetics.

Authors:  K Virtaneva; F A Wright; S M Tanner; B Yuan; W J Lemon; M A Caligiuri; C D Bloomfield; A de La Chapelle ; R Krahe
Journal:  Proc Natl Acad Sci U S A       Date:  2001-01-30       Impact factor: 11.205

4.  Centrosome amplification and instability occurs exclusively in aneuploid, but not in diploid colorectal cancer cell lines, and correlates with numerical chromosomal aberrations.

Authors:  B M Ghadimi; D L Sackett; M J Difilippantonio; E Schröck; T Neumann; A Jauho; G Auer; T Ried
Journal:  Genes Chromosomes Cancer       Date:  2000-02       Impact factor: 5.006

5.  Transfer and selective retention of single specific human chromosomes via microcell-mediated chromosome transfer.

Authors:  P J Saxon; E J Stanbridge
Journal:  Methods Enzymol       Date:  1987       Impact factor: 1.600

6.  Functional roles of chromosomes 11 and 17 in the transformation of human breast epithelial cells in vitro.

Authors:  X Yang; Q Tahin; Y F Hu; I H Russo; B R Balsara; D Mihaila; C Slater; J C Barrett; J Russo
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7.  Comparative genomic hybridization study on pooled DNAs from tumors of one clinical-pathological entity.

Authors:  S Knuutila; G Armengol; A M Björkqvist; W el-Rifai; M L Larramendy; O Monni; J Szymanska
Journal:  Cancer Genet Cytogenet       Date:  1998-01-01

8.  Silence of chromosomal amplifications in colon cancer.

Authors:  Petra Platzer; Madhvi B Upender; Keith Wilson; Joseph Willis; James Lutterbaugh; Arman Nosrati; James K V Willson; David Mack; Thomas Ried; Sanford Markowitz
Journal:  Cancer Res       Date:  2002-02-15       Impact factor: 12.701

9.  Comparative genomic hybridization reveals a specific pattern of chromosomal gains and losses during the genesis of colorectal tumors.

Authors:  T Ried; R Knutzen; R Steinbeck; H Blegen; E Schröck; K Heselmeyer; S du Manoir; G Auer
Journal:  Genes Chromosomes Cancer       Date:  1996-04       Impact factor: 5.006

Review 10.  Does the intrinsic instability of aneuploid genomes have a causal role in cancer?

Authors:  Marjori A Matzke; M Florian Mette; Tatsuo Kanno; Antonius J M Matzke
Journal:  Trends Genet       Date:  2003-05       Impact factor: 11.639

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  84 in total

1.  Spontaneous transformation of murine epithelial cells requires the early acquisition of specific chromosomal aneuploidies and genomic imbalances.

Authors:  Hesed M Padilla-Nash; Karen Hathcock; Nicole E McNeil; David Mack; Daniel Hoeppner; Rea Ravin; Turid Knutsen; Raluca Yonescu; Danny Wangsa; Kathleen Dorritie; Linda Barenboim; Yue Hu; Thomas Ried
Journal:  Genes Chromosomes Cancer       Date:  2011-12-08       Impact factor: 5.006

Review 2.  Patterns of Chromosomal Aberrations in Solid Tumors.

Authors:  Marian Grade; Michael J Difilippantonio; Jordi Camps
Journal:  Recent Results Cancer Res       Date:  2015

3.  Aneuploidy-dependent massive deregulation of the cellular transcriptome and apparent divergence of the Wnt/beta-catenin signaling pathway in human rectal carcinomas.

Authors:  Marian Grade; B Michael Ghadimi; Sudhir Varma; Richard Simon; Danny Wangsa; Linda Barenboim-Stapleton; Torsten Liersch; Heinz Becker; Thomas Ried; Michael J Difilippantonio
Journal:  Cancer Res       Date:  2006-01-01       Impact factor: 12.701

4.  A comprehensive continuous-time model for the appearance of CGH signal due to chromosomal missegregations during mitosis.

Authors:  Richard Desper; Michael J Difilippantonio; Thomas Ried; Alejandro A Schäffer
Journal:  Math Biosci       Date:  2005-09       Impact factor: 2.144

5.  Genomic analysis of CD8+ NK/T cell line, 'SRIK-NKL', with array-based CGH (aCGH), SKY/FISH and molecular mapping.

Authors:  Michael R Rossi; Jeff Laduca; John K Cowell; Bejai I S Srivastava; Seiichi Matsui
Journal:  Leuk Res       Date:  2007-07-20       Impact factor: 3.156

6.  Unstable genomes elevate transcriptome dynamics.

Authors:  Joshua B Stevens; Guo Liu; Batoul Y Abdallah; Steven D Horne; Karen J Ye; Steven W Bremer; Christine J Ye; Stephen A Krawetz; Henry H Heng
Journal:  Int J Cancer       Date:  2014-05-01       Impact factor: 7.396

7.  Position of human chromosomes is conserved in mouse nuclei indicating a species-independent mechanism for maintaining genome organization.

Authors:  Kundan Sengupta; Jordi Camps; Priya Mathews; Linda Barenboim-Stapleton; Quang Tri Nguyen; Michael J Difilippantonio; Thomas Ried
Journal:  Chromosoma       Date:  2008-06-18       Impact factor: 4.316

8.  Whole chromosome gain does not in itself confer cancer-like chromosomal instability.

Authors:  Anders Valind; Yuesheng Jin; Bo Baldetorp; David Gisselsson
Journal:  Proc Natl Acad Sci U S A       Date:  2013-12-09       Impact factor: 11.205

9.  Rapid DNA double-strand breaks resulting from processing of Cr-DNA cross-links by both MutS dimers.

Authors:  Mindy F Reynolds; Elizabeth C Peterson-Roth; Ivan A Bespalov; Tatiana Johnston; Volkan M Gurel; Haley L Menard; Anatoly Zhitkovich
Journal:  Cancer Res       Date:  2009-01-13       Impact factor: 12.701

10.  Aneuploidy-associated gene expression signatures characterize malignant transformation in ulcerative colitis.

Authors:  Marco Gerling; Kari Nousiainen; Sampsa Hautaniemi; Stefan Krüger; Britta Fritzsche; Nils Homann; Hans-Peter Bruch; Gert Auer; Uwe J Roblick; Thomas Ried; Jens K Habermann
Journal:  Inflamm Bowel Dis       Date:  2013 Mar-Apr       Impact factor: 5.325

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