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Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual

Although patterns of somatic alterations have been reported for tumor genomes, little is known on how they compare with alterations present in non-tumor genomes. A comparison of the two would be crucial to better characterize the genetic alterations driving tumorigenesis. We sequenced the genomes of...

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Autores principales: Galante, Pedro A. F., Parmigiani, Raphael B., Zhao, Qi, Caballero, Otávia L., de Souza, Jorge E., Navarro, Fábio C. P., Gerber, Alexandra L., Nicolás, Marisa F., Salim, Anna Christina M., Silva, Ana Paula M., Edsall, Lee, Devalle, Sylvie, Almeida, Luiz G., Ye, Zhen, Kuan, Samantha, Pinheiro, Daniel G., Tojal, Israel, Pedigoni, Renato G., de Sousa, Rodrigo G. M. A., Oliveira, Thiago Y. K., de Paula, Marcelo G., Ohno-Machado, Lucila, Kirkness, Ewen F., Levy, Samuel, da Silva, Wilson A., Vasconcelos, Ana Tereza R., Ren, Bing, Zago, Marco Antonio, Strausberg, Robert L., Simpson, Andrew J. G., de Souza, Sandro J., Camargo, Anamaria A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3152357/
https://www.ncbi.nlm.nih.gov/pubmed/21493686
http://dx.doi.org/10.1093/nar/gkr221
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author Galante, Pedro A. F.
Parmigiani, Raphael B.
Zhao, Qi
Caballero, Otávia L.
de Souza, Jorge E.
Navarro, Fábio C. P.
Gerber, Alexandra L.
Nicolás, Marisa F.
Salim, Anna Christina M.
Silva, Ana Paula M.
Edsall, Lee
Devalle, Sylvie
Almeida, Luiz G.
Ye, Zhen
Kuan, Samantha
Pinheiro, Daniel G.
Tojal, Israel
Pedigoni, Renato G.
de Sousa, Rodrigo G. M. A.
Oliveira, Thiago Y. K.
de Paula, Marcelo G.
Ohno-Machado, Lucila
Kirkness, Ewen F.
Levy, Samuel
da Silva, Wilson A.
Vasconcelos, Ana Tereza R.
Ren, Bing
Zago, Marco Antonio
Strausberg, Robert L.
Simpson, Andrew J. G.
de Souza, Sandro J.
Camargo, Anamaria A.
author_facet Galante, Pedro A. F.
Parmigiani, Raphael B.
Zhao, Qi
Caballero, Otávia L.
de Souza, Jorge E.
Navarro, Fábio C. P.
Gerber, Alexandra L.
Nicolás, Marisa F.
Salim, Anna Christina M.
Silva, Ana Paula M.
Edsall, Lee
Devalle, Sylvie
Almeida, Luiz G.
Ye, Zhen
Kuan, Samantha
Pinheiro, Daniel G.
Tojal, Israel
Pedigoni, Renato G.
de Sousa, Rodrigo G. M. A.
Oliveira, Thiago Y. K.
de Paula, Marcelo G.
Ohno-Machado, Lucila
Kirkness, Ewen F.
Levy, Samuel
da Silva, Wilson A.
Vasconcelos, Ana Tereza R.
Ren, Bing
Zago, Marco Antonio
Strausberg, Robert L.
Simpson, Andrew J. G.
de Souza, Sandro J.
Camargo, Anamaria A.
author_sort Galante, Pedro A. F.
collection PubMed
description Although patterns of somatic alterations have been reported for tumor genomes, little is known on how they compare with alterations present in non-tumor genomes. A comparison of the two would be crucial to better characterize the genetic alterations driving tumorigenesis. We sequenced the genomes of a lymphoblastoid (HCC1954BL) and a breast tumor (HCC1954) cell line derived from the same patient and compared the somatic alterations present in both. The lymphoblastoid genome presents a comparable number and similar spectrum of nucleotide substitutions to that found in the tumor genome. However, a significant difference in the ratio of non-synonymous to synonymous substitutions was observed between both genomes (P = 0.031). Protein–protein interaction analysis revealed that mutations in the tumor genome preferentially affect hub-genes (P = 0.0017) and are co-selected to present synergistic functions (P < 0.0001). KEGG analysis showed that in the tumor genome most mutated genes were organized into signaling pathways related to tumorigenesis. No such organization or synergy was observed in the lymphoblastoid genome. Our results indicate that endogenous mutagens and replication errors can generate the overall number of mutations required to drive tumorigenesis and that it is the combination rather than the frequency of mutations that is crucial to complete tumorigenic transformation.
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spelling pubmed-31523572011-08-08 Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual Galante, Pedro A. F. Parmigiani, Raphael B. Zhao, Qi Caballero, Otávia L. de Souza, Jorge E. Navarro, Fábio C. P. Gerber, Alexandra L. Nicolás, Marisa F. Salim, Anna Christina M. Silva, Ana Paula M. Edsall, Lee Devalle, Sylvie Almeida, Luiz G. Ye, Zhen Kuan, Samantha Pinheiro, Daniel G. Tojal, Israel Pedigoni, Renato G. de Sousa, Rodrigo G. M. A. Oliveira, Thiago Y. K. de Paula, Marcelo G. Ohno-Machado, Lucila Kirkness, Ewen F. Levy, Samuel da Silva, Wilson A. Vasconcelos, Ana Tereza R. Ren, Bing Zago, Marco Antonio Strausberg, Robert L. Simpson, Andrew J. G. de Souza, Sandro J. Camargo, Anamaria A. Nucleic Acids Res Genomics Although patterns of somatic alterations have been reported for tumor genomes, little is known on how they compare with alterations present in non-tumor genomes. A comparison of the two would be crucial to better characterize the genetic alterations driving tumorigenesis. We sequenced the genomes of a lymphoblastoid (HCC1954BL) and a breast tumor (HCC1954) cell line derived from the same patient and compared the somatic alterations present in both. The lymphoblastoid genome presents a comparable number and similar spectrum of nucleotide substitutions to that found in the tumor genome. However, a significant difference in the ratio of non-synonymous to synonymous substitutions was observed between both genomes (P = 0.031). Protein–protein interaction analysis revealed that mutations in the tumor genome preferentially affect hub-genes (P = 0.0017) and are co-selected to present synergistic functions (P < 0.0001). KEGG analysis showed that in the tumor genome most mutated genes were organized into signaling pathways related to tumorigenesis. No such organization or synergy was observed in the lymphoblastoid genome. Our results indicate that endogenous mutagens and replication errors can generate the overall number of mutations required to drive tumorigenesis and that it is the combination rather than the frequency of mutations that is crucial to complete tumorigenic transformation. Oxford University Press 2011-08 2011-04-14 /pmc/articles/PMC3152357/ /pubmed/21493686 http://dx.doi.org/10.1093/nar/gkr221 Text en © The Author(s) 2011. Published by Oxford University Press. http://creativecommons.org/licenses/by-nc/2.5 This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.5), which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Genomics
Galante, Pedro A. F.
Parmigiani, Raphael B.
Zhao, Qi
Caballero, Otávia L.
de Souza, Jorge E.
Navarro, Fábio C. P.
Gerber, Alexandra L.
Nicolás, Marisa F.
Salim, Anna Christina M.
Silva, Ana Paula M.
Edsall, Lee
Devalle, Sylvie
Almeida, Luiz G.
Ye, Zhen
Kuan, Samantha
Pinheiro, Daniel G.
Tojal, Israel
Pedigoni, Renato G.
de Sousa, Rodrigo G. M. A.
Oliveira, Thiago Y. K.
de Paula, Marcelo G.
Ohno-Machado, Lucila
Kirkness, Ewen F.
Levy, Samuel
da Silva, Wilson A.
Vasconcelos, Ana Tereza R.
Ren, Bing
Zago, Marco Antonio
Strausberg, Robert L.
Simpson, Andrew J. G.
de Souza, Sandro J.
Camargo, Anamaria A.
Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title_full Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title_fullStr Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title_full_unstemmed Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title_short Distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
title_sort distinct patterns of somatic alterations in a lymphoblastoid and a tumor genome derived from the same individual
topic Genomics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3152357/
https://www.ncbi.nlm.nih.gov/pubmed/21493686
http://dx.doi.org/10.1093/nar/gkr221
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