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Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells

Canine osteosarcoma (OSA) is known to present with highly variable and chaotic karyotypes, including hypodiploidy, hyperdiploidy, and increased numbers of metacentric chromosomes. The spectrum of genomic instabilities in canine OSA has significantly augmented the difficulty in clearly defining the b...

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Autores principales: Maeda, Junko, Yurkon, Charles R., Fujisawa, Hiroshi, Kaneko, Masami, Genet, Stefan C., Roybal, Erica J., Rota, Garrett W., Saffer, Ethan R., Rose, Barbara J., Hanneman, William H., Thamm, Douglas H., Kato, Takamitsu A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3420908/
https://www.ncbi.nlm.nih.gov/pubmed/22916246
http://dx.doi.org/10.1371/journal.pone.0043355
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author Maeda, Junko
Yurkon, Charles R.
Fujisawa, Hiroshi
Kaneko, Masami
Genet, Stefan C.
Roybal, Erica J.
Rota, Garrett W.
Saffer, Ethan R.
Rose, Barbara J.
Hanneman, William H.
Thamm, Douglas H.
Kato, Takamitsu A.
author_facet Maeda, Junko
Yurkon, Charles R.
Fujisawa, Hiroshi
Kaneko, Masami
Genet, Stefan C.
Roybal, Erica J.
Rota, Garrett W.
Saffer, Ethan R.
Rose, Barbara J.
Hanneman, William H.
Thamm, Douglas H.
Kato, Takamitsu A.
author_sort Maeda, Junko
collection PubMed
description Canine osteosarcoma (OSA) is known to present with highly variable and chaotic karyotypes, including hypodiploidy, hyperdiploidy, and increased numbers of metacentric chromosomes. The spectrum of genomic instabilities in canine OSA has significantly augmented the difficulty in clearly defining the biological and clinical significance of the observed cytogenetic abnormalities. In this study, eight canine OSA cell lines were used to investigate telomere fusions by fluorescence in situ hybridization (FISH) using a peptide nucleotide acid probe. We characterized each cell line by classical cytogenetic studies and cellular phenotypes including telomere associated factors and then evaluated correlations from this data. All eight canine OSA cell lines displayed increased abnormal metacentric chromosomes and exhibited numerous telomere fusions and interstitial telomeric signals. Also, as evidence of unstable telomeres, colocalization of γ-H2AX and telomere signals in interphase cells was observed. Each cell line was characterized by a combination of data representing cellular doubling time, DNA content, chromosome number, metacentric chromosome frequency, telomere signal level, cellular radiosensitivity, and DNA-PKcs protein expression level. We have also studied primary cultures from 10 spontaneous canine OSAs. Based on the observation of telomere aberrations in those primary cell cultures, we are reasonably certain that our observations in cell lines are not an artifact of prolonged culture. A correlation between telomere fusions and the other characteristics analyzed in our study could not be identified. However, it is important to note that all of the canine OSA samples exhibiting telomere fusion utilized in our study were telomerase positive. Pending further research regarding telomerase negative canine OSA cell lines, our findings may suggest telomere fusions can potentially serve as a novel marker for canine OSA.
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spelling pubmed-34209082012-08-22 Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells Maeda, Junko Yurkon, Charles R. Fujisawa, Hiroshi Kaneko, Masami Genet, Stefan C. Roybal, Erica J. Rota, Garrett W. Saffer, Ethan R. Rose, Barbara J. Hanneman, William H. Thamm, Douglas H. Kato, Takamitsu A. PLoS One Research Article Canine osteosarcoma (OSA) is known to present with highly variable and chaotic karyotypes, including hypodiploidy, hyperdiploidy, and increased numbers of metacentric chromosomes. The spectrum of genomic instabilities in canine OSA has significantly augmented the difficulty in clearly defining the biological and clinical significance of the observed cytogenetic abnormalities. In this study, eight canine OSA cell lines were used to investigate telomere fusions by fluorescence in situ hybridization (FISH) using a peptide nucleotide acid probe. We characterized each cell line by classical cytogenetic studies and cellular phenotypes including telomere associated factors and then evaluated correlations from this data. All eight canine OSA cell lines displayed increased abnormal metacentric chromosomes and exhibited numerous telomere fusions and interstitial telomeric signals. Also, as evidence of unstable telomeres, colocalization of γ-H2AX and telomere signals in interphase cells was observed. Each cell line was characterized by a combination of data representing cellular doubling time, DNA content, chromosome number, metacentric chromosome frequency, telomere signal level, cellular radiosensitivity, and DNA-PKcs protein expression level. We have also studied primary cultures from 10 spontaneous canine OSAs. Based on the observation of telomere aberrations in those primary cell cultures, we are reasonably certain that our observations in cell lines are not an artifact of prolonged culture. A correlation between telomere fusions and the other characteristics analyzed in our study could not be identified. However, it is important to note that all of the canine OSA samples exhibiting telomere fusion utilized in our study were telomerase positive. Pending further research regarding telomerase negative canine OSA cell lines, our findings may suggest telomere fusions can potentially serve as a novel marker for canine OSA. Public Library of Science 2012-08-16 /pmc/articles/PMC3420908/ /pubmed/22916246 http://dx.doi.org/10.1371/journal.pone.0043355 Text en © 2012 Maeda et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Maeda, Junko
Yurkon, Charles R.
Fujisawa, Hiroshi
Kaneko, Masami
Genet, Stefan C.
Roybal, Erica J.
Rota, Garrett W.
Saffer, Ethan R.
Rose, Barbara J.
Hanneman, William H.
Thamm, Douglas H.
Kato, Takamitsu A.
Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title_full Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title_fullStr Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title_full_unstemmed Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title_short Genomic Instability and Telomere Fusion of Canine Osteosarcoma Cells
title_sort genomic instability and telomere fusion of canine osteosarcoma cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3420908/
https://www.ncbi.nlm.nih.gov/pubmed/22916246
http://dx.doi.org/10.1371/journal.pone.0043355
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