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APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors

Intratumor mutational heterogeneity has been documented in primary non-small-cell lung cancer. Here, we elucidate mechanisms of tumor evolution and heterogeneity in metastatic thoracic tumors (lung adenocarcinoma and thymic carcinoma) using whole-exome and transcriptome sequencing, SNP array for cop...

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Autores principales: Roper, Nitin, Gao, Shaojian, Maity, Tapan K., Banday, A. Rouf, Zhang, Xu, Venugopalan, Abhilash, Cultraro, Constance M., Patidar, Rajesh, Sindiri, Sivasish, Brown, Anna-Leigh, Goncearenco, Alexander, Panchenko, Anna R., Biswas, Romi, Thomas, Anish, Rajan, Arun, Carter, Corey A., Kleiner, David E., Hewitt, Stephen M., Khan, Javed, Prokunina-Olsson, Ludmila, Guha, Udayan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6461561/
https://www.ncbi.nlm.nih.gov/pubmed/30840888
http://dx.doi.org/10.1016/j.celrep.2019.02.028
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author Roper, Nitin
Gao, Shaojian
Maity, Tapan K.
Banday, A. Rouf
Zhang, Xu
Venugopalan, Abhilash
Cultraro, Constance M.
Patidar, Rajesh
Sindiri, Sivasish
Brown, Anna-Leigh
Goncearenco, Alexander
Panchenko, Anna R.
Biswas, Romi
Thomas, Anish
Rajan, Arun
Carter, Corey A.
Kleiner, David E.
Hewitt, Stephen M.
Khan, Javed
Prokunina-Olsson, Ludmila
Guha, Udayan
author_facet Roper, Nitin
Gao, Shaojian
Maity, Tapan K.
Banday, A. Rouf
Zhang, Xu
Venugopalan, Abhilash
Cultraro, Constance M.
Patidar, Rajesh
Sindiri, Sivasish
Brown, Anna-Leigh
Goncearenco, Alexander
Panchenko, Anna R.
Biswas, Romi
Thomas, Anish
Rajan, Arun
Carter, Corey A.
Kleiner, David E.
Hewitt, Stephen M.
Khan, Javed
Prokunina-Olsson, Ludmila
Guha, Udayan
author_sort Roper, Nitin
collection PubMed
description Intratumor mutational heterogeneity has been documented in primary non-small-cell lung cancer. Here, we elucidate mechanisms of tumor evolution and heterogeneity in metastatic thoracic tumors (lung adenocarcinoma and thymic carcinoma) using whole-exome and transcriptome sequencing, SNP array for copy-number alterations (CNAs), and mass-spectrometry-based quantitative proteomics of metastases obtained by rapid autopsy. APOBEC mutagenesis, promoted by increased expression of APOBEC3 region transcripts and associated with a high-risk APOBEC3 germline variant, correlated with mutational tumor heterogeneity. TP53 mutation status was associated with APOBEC hypermutator status. Interferon pathways were enriched in tumors with high APOBEC mutagenesis and IFN-γ-induced expression of APOBEC3B in lung adenocarcinoma cells, suggesting that the immune microenvironment may promote mutational heterogeneity. CNAs occurring late in tumor evolution correlated with downstream transcriptomic and proteomic heterogeneity, although global proteomic heterogeneity was significantly greater than transcriptomic and CNA heterogeneity. These results illustrate key mechanisms underlying multi-dimensional heterogeneity in metastatic thoracic tumors.
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spelling pubmed-64615612019-04-12 APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors Roper, Nitin Gao, Shaojian Maity, Tapan K. Banday, A. Rouf Zhang, Xu Venugopalan, Abhilash Cultraro, Constance M. Patidar, Rajesh Sindiri, Sivasish Brown, Anna-Leigh Goncearenco, Alexander Panchenko, Anna R. Biswas, Romi Thomas, Anish Rajan, Arun Carter, Corey A. Kleiner, David E. Hewitt, Stephen M. Khan, Javed Prokunina-Olsson, Ludmila Guha, Udayan Cell Rep Article Intratumor mutational heterogeneity has been documented in primary non-small-cell lung cancer. Here, we elucidate mechanisms of tumor evolution and heterogeneity in metastatic thoracic tumors (lung adenocarcinoma and thymic carcinoma) using whole-exome and transcriptome sequencing, SNP array for copy-number alterations (CNAs), and mass-spectrometry-based quantitative proteomics of metastases obtained by rapid autopsy. APOBEC mutagenesis, promoted by increased expression of APOBEC3 region transcripts and associated with a high-risk APOBEC3 germline variant, correlated with mutational tumor heterogeneity. TP53 mutation status was associated with APOBEC hypermutator status. Interferon pathways were enriched in tumors with high APOBEC mutagenesis and IFN-γ-induced expression of APOBEC3B in lung adenocarcinoma cells, suggesting that the immune microenvironment may promote mutational heterogeneity. CNAs occurring late in tumor evolution correlated with downstream transcriptomic and proteomic heterogeneity, although global proteomic heterogeneity was significantly greater than transcriptomic and CNA heterogeneity. These results illustrate key mechanisms underlying multi-dimensional heterogeneity in metastatic thoracic tumors. 2019-03-05 /pmc/articles/PMC6461561/ /pubmed/30840888 http://dx.doi.org/10.1016/j.celrep.2019.02.028 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Roper, Nitin
Gao, Shaojian
Maity, Tapan K.
Banday, A. Rouf
Zhang, Xu
Venugopalan, Abhilash
Cultraro, Constance M.
Patidar, Rajesh
Sindiri, Sivasish
Brown, Anna-Leigh
Goncearenco, Alexander
Panchenko, Anna R.
Biswas, Romi
Thomas, Anish
Rajan, Arun
Carter, Corey A.
Kleiner, David E.
Hewitt, Stephen M.
Khan, Javed
Prokunina-Olsson, Ludmila
Guha, Udayan
APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title_full APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title_fullStr APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title_full_unstemmed APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title_short APOBEC Mutagenesis and Copy-Number Alterations Are Drivers of Proteogenomic Tumor Evolution and Heterogeneity in Metastatic Thoracic Tumors
title_sort apobec mutagenesis and copy-number alterations are drivers of proteogenomic tumor evolution and heterogeneity in metastatic thoracic tumors
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6461561/
https://www.ncbi.nlm.nih.gov/pubmed/30840888
http://dx.doi.org/10.1016/j.celrep.2019.02.028
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