Literature DB >> 20072649

Telomere-centromere-driven genomic instability contributes to karyotype evolution in a mouse model of melanoma.

Amanda Gonçalves Dos Santos Silva1, Herbert Alexander Graves, Amanda Guffei, Tatiana Iervolino Ricca, Renato Arruda Mortara, Miriam Galvonas Jasiulionis, Sabine Mai.   

Abstract

Aneuploidy and chromosomal instability (CIN) are hallmarks of most solid tumors. These alterations may result from inaccurate chromosomal segregation during mitosis, which can occur through several mechanisms including defective telomere metabolism, centrosome amplification, dysfunctional centromeres, and/or defective spindle checkpoint control. In this work, we used an in vitro murine melanoma model that uses a cellular adhesion blockade as a transforming factor to characterize telomeric and centromeric alterations that accompany melanocyte transformation. To study the timing of the occurrence of telomere shortening in this transformation model, we analyzed the profile of telomere length by quantitative fluorescent in situ hybridization and found that telomere length significantly decreased as additional rounds of cell adhesion blockages were performed. Together with it, an increase in telomere-free ends and complex karyotypic aberrations were also found, which include Robertsonian fusions in 100% of metaphases of the metastatic melanoma cells. These findings are in agreement with the idea that telomere length abnormalities seem to be one of the earliest genetic alterations acquired in the multistep process of malignant transformation and that telomere abnormalities result in telomere aggregation, breakage-bridge-fusion cycles, and CIN. Another remarkable feature of this model is the abundance of centromeric instability manifested as centromere fragments and centromeric fusions. Taken together, our results illustrate for this melanoma model CIN with a structural signature of centromere breakage and telomeric loss.

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Year:  2010        PMID: 20072649      PMCID: PMC2805879          DOI: 10.1593/neo.91004

Source DB:  PubMed          Journal:  Neoplasia        ISSN: 1476-5586            Impact factor:   5.715


  66 in total

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Authors:  S Henikoff; K Ahmad; H S Malik
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Review 2.  Patterns of genomic imbalances in human solid tumors (Review).

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3.  Inversions of chromosomes 2 and 6 in mantle cell lymphoma. Cytogenetic, FISH, and molecular studies.

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4.  Jumping translocations are common in solid tumor cell lines and result in recurrent fusions of whole chromosome arms.

Authors:  H M Padilla-Nash; K Heselmeyer-Haddad; D Wangsa; H Zhang; B M Ghadimi; M Macville; M Augustus; E Schröck; E Hilgenfeld; T Ried
Journal:  Genes Chromosomes Cancer       Date:  2001-04       Impact factor: 5.006

Review 5.  Mouse models for multistep tumorigenesis.

Authors:  X Wu; P P Pandolfi
Journal:  Trends Cell Biol       Date:  2001-11       Impact factor: 20.808

6.  Telomere dysfunction promotes non-reciprocal translocations and epithelial cancers in mice.

Authors:  S E Artandi; S Chang; S L Lee; S Alson; G J Gottlieb; L Chin; R A DePinho
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Review 8.  The kinetochore and cancer: what's the connection?

Authors:  Karen W Y Yuen; Ben Montpetit; Philip Hieter
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9.  Melanocyte transformation associated with substrate adhesion impediment.

Authors:  Sueli M Oba-Shinjo; Mariangela Correa; Tatiana I Ricca; Fernanda Molognoni; Maria A Pinhal; Izabel A Neves; Sueli K Marie; Lúcia O Sampaio; Helena B Nader; Roger Chammas; Miriam G Jasiulionis
Journal:  Neoplasia       Date:  2006-03       Impact factor: 5.715

Review 10.  Telomeres, chromosome instability and cancer.

Authors:  Susan M Bailey; John P Murnane
Journal:  Nucleic Acids Res       Date:  2006-05-08       Impact factor: 16.971

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  14 in total

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2.  Leukocyte telomere length predicts overall survival in hepatocellular carcinoma treated with transarterial chemoembolization.

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3.  Epigenetic reprogramming as a key contributor to melanocyte malignant transformation.

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6.  Effects of TIN2 on telomeres and chromosomes in the human gastric epithelial cell line GES-1.

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7.  PRAME as an Independent Biomarker for Metastasis in Uveal Melanoma.

Authors:  Matthew G Field; Christina L Decatur; Stefan Kurtenbach; Gülçin Gezgin; Pieter A van der Velden; Martine J Jager; Kaleigh N Kozak; J William Harbour
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8.  Overcoming intratumor heterogeneity of polygenic cancer drug resistance with improved biomarker integration.

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Journal:  Neoplasia       Date:  2012-12       Impact factor: 5.715

Review 9.  c-MYC-induced genomic instability.

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10.  Mining gene expression signature for the detection of pre-malignant melanocytes and early melanomas with risk for metastasis.

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