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A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers

BACKGROUND: Deep sequencing techniques provide a remarkable opportunity for comprehensive understanding of tumorigenesis at the molecular level. As omics studies become popular, integrative approaches need to be developed to move from a simple cataloguing of mutations and changes in gene expression...

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Autores principales: Kim, Sang Cheol, Jung, Yeonjoo, Park, Jinah, Cho, Sooyoung, Seo, Chaehwa, Kim, Jaesang, Kim, Pora, Park, Jehwan, Seo, Jihae, Kim, Jiwoong, Park, Seongjin, Jang, Insu, Kim, Namshin, Yang, Jin Ok, Lee, Byungwook, Rho, Kyoohyoung, Jung, Yeonhwa, Keum, Juhee, Lee, Jinseon, Han, Jungho, Kang, Sangeun, Bae, Sujin, Choi, So-Jung, Kim, Sujin, Lee, Jong-Eun, Kim, Wankyu, Kim, Jhingook, Lee, Sanghyuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566005/
https://www.ncbi.nlm.nih.gov/pubmed/23405175
http://dx.doi.org/10.1371/journal.pone.0055596
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author Kim, Sang Cheol
Jung, Yeonjoo
Park, Jinah
Cho, Sooyoung
Seo, Chaehwa
Kim, Jaesang
Kim, Pora
Park, Jehwan
Seo, Jihae
Kim, Jiwoong
Park, Seongjin
Jang, Insu
Kim, Namshin
Yang, Jin Ok
Lee, Byungwook
Rho, Kyoohyoung
Jung, Yeonhwa
Keum, Juhee
Lee, Jinseon
Han, Jungho
Kang, Sangeun
Bae, Sujin
Choi, So-Jung
Kim, Sujin
Lee, Jong-Eun
Kim, Wankyu
Kim, Jhingook
Lee, Sanghyuk
author_facet Kim, Sang Cheol
Jung, Yeonjoo
Park, Jinah
Cho, Sooyoung
Seo, Chaehwa
Kim, Jaesang
Kim, Pora
Park, Jehwan
Seo, Jihae
Kim, Jiwoong
Park, Seongjin
Jang, Insu
Kim, Namshin
Yang, Jin Ok
Lee, Byungwook
Rho, Kyoohyoung
Jung, Yeonhwa
Keum, Juhee
Lee, Jinseon
Han, Jungho
Kang, Sangeun
Bae, Sujin
Choi, So-Jung
Kim, Sujin
Lee, Jong-Eun
Kim, Wankyu
Kim, Jhingook
Lee, Sanghyuk
author_sort Kim, Sang Cheol
collection PubMed
description BACKGROUND: Deep sequencing techniques provide a remarkable opportunity for comprehensive understanding of tumorigenesis at the molecular level. As omics studies become popular, integrative approaches need to be developed to move from a simple cataloguing of mutations and changes in gene expression to dissecting the molecular nature of carcinogenesis at the systemic level and understanding the complex networks that lead to cancer development. RESULTS: Here, we describe a high-throughput, multi-dimensional sequencing study of primary lung adenocarcinoma tumors and adjacent normal tissues of six Korean female never-smoker patients. Our data encompass results from exome-seq, RNA-seq, small RNA-seq, and MeDIP-seq. We identified and validated novel genetic aberrations, including 47 somatic mutations and 19 fusion transcripts. One of the fusions involves the c-RET gene, which was recently reported to form fusion genes that may function as drivers of carcinogenesis in lung cancer patients. We also characterized gene expression profiles, which we integrated with genomic aberrations and gene regulations into functional networks. The most prominent gene network module that emerged indicates that disturbances in G2/M transition and mitotic progression are causally linked to tumorigenesis in these patients. Also, results from the analysis strongly suggest that several novel microRNA-target interactions represent key regulatory elements of the gene network. CONCLUSIONS: Our study not only provides an overview of the alterations occurring in lung adenocarcinoma at multiple levels from genome to transcriptome and epigenome, but also offers a model for integrative genomics analysis and proposes potential target pathways for the control of lung adenocarcinoma.
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spelling pubmed-35660052013-02-12 A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers Kim, Sang Cheol Jung, Yeonjoo Park, Jinah Cho, Sooyoung Seo, Chaehwa Kim, Jaesang Kim, Pora Park, Jehwan Seo, Jihae Kim, Jiwoong Park, Seongjin Jang, Insu Kim, Namshin Yang, Jin Ok Lee, Byungwook Rho, Kyoohyoung Jung, Yeonhwa Keum, Juhee Lee, Jinseon Han, Jungho Kang, Sangeun Bae, Sujin Choi, So-Jung Kim, Sujin Lee, Jong-Eun Kim, Wankyu Kim, Jhingook Lee, Sanghyuk PLoS One Research Article BACKGROUND: Deep sequencing techniques provide a remarkable opportunity for comprehensive understanding of tumorigenesis at the molecular level. As omics studies become popular, integrative approaches need to be developed to move from a simple cataloguing of mutations and changes in gene expression to dissecting the molecular nature of carcinogenesis at the systemic level and understanding the complex networks that lead to cancer development. RESULTS: Here, we describe a high-throughput, multi-dimensional sequencing study of primary lung adenocarcinoma tumors and adjacent normal tissues of six Korean female never-smoker patients. Our data encompass results from exome-seq, RNA-seq, small RNA-seq, and MeDIP-seq. We identified and validated novel genetic aberrations, including 47 somatic mutations and 19 fusion transcripts. One of the fusions involves the c-RET gene, which was recently reported to form fusion genes that may function as drivers of carcinogenesis in lung cancer patients. We also characterized gene expression profiles, which we integrated with genomic aberrations and gene regulations into functional networks. The most prominent gene network module that emerged indicates that disturbances in G2/M transition and mitotic progression are causally linked to tumorigenesis in these patients. Also, results from the analysis strongly suggest that several novel microRNA-target interactions represent key regulatory elements of the gene network. CONCLUSIONS: Our study not only provides an overview of the alterations occurring in lung adenocarcinoma at multiple levels from genome to transcriptome and epigenome, but also offers a model for integrative genomics analysis and proposes potential target pathways for the control of lung adenocarcinoma. Public Library of Science 2013-02-06 /pmc/articles/PMC3566005/ /pubmed/23405175 http://dx.doi.org/10.1371/journal.pone.0055596 Text en © 2013 Kim 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
Kim, Sang Cheol
Jung, Yeonjoo
Park, Jinah
Cho, Sooyoung
Seo, Chaehwa
Kim, Jaesang
Kim, Pora
Park, Jehwan
Seo, Jihae
Kim, Jiwoong
Park, Seongjin
Jang, Insu
Kim, Namshin
Yang, Jin Ok
Lee, Byungwook
Rho, Kyoohyoung
Jung, Yeonhwa
Keum, Juhee
Lee, Jinseon
Han, Jungho
Kang, Sangeun
Bae, Sujin
Choi, So-Jung
Kim, Sujin
Lee, Jong-Eun
Kim, Wankyu
Kim, Jhingook
Lee, Sanghyuk
A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title_full A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title_fullStr A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title_full_unstemmed A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title_short A High-Dimensional, Deep-Sequencing Study of Lung Adenocarcinoma in Female Never-Smokers
title_sort high-dimensional, deep-sequencing study of lung adenocarcinoma in female never-smokers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3566005/
https://www.ncbi.nlm.nih.gov/pubmed/23405175
http://dx.doi.org/10.1371/journal.pone.0055596
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