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Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers

Recent studies applying high-throughput sequencing technologies have identified several recurrently mutated genes and pathways in multiple cancer genomes. However, transcriptional consequences from these genomic alterations in cancer genome remain unclear. In this study, we performed integrated and...

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Autores principales: Shiraishi, Yuichi, Fujimoto, Akihiro, Furuta, Mayuko, Tanaka, Hiroko, Chiba, Ken-ichi, Boroevich, Keith A., Abe, Tetsuo, Kawakami, Yoshiiku, Ueno, Masaki, Gotoh, Kunihito, Ariizumi, Shun-ichi, Shibuya, Tetsuo, Nakano, Kaoru, Sasaki, Aya, Maejima, Kazuhiro, Kitada, Rina, Hayami, Shinya, Shigekawa, Yoshinobu, Marubashi, Shigeru, Yamada, Terumasa, Kubo, Michiaki, Ishikawa, Osamu, Aikata, Hiroshi, Arihiro, Koji, Ohdan, Hideki, Yamamoto, Masakazu, Yamaue, Hiroki, Chayama, Kazuaki, Tsunoda, Tatsuhiko, Miyano, Satoru, Nakagawa, Hidewaki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4272259/
https://www.ncbi.nlm.nih.gov/pubmed/25526364
http://dx.doi.org/10.1371/journal.pone.0114263
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author Shiraishi, Yuichi
Fujimoto, Akihiro
Furuta, Mayuko
Tanaka, Hiroko
Chiba, Ken-ichi
Boroevich, Keith A.
Abe, Tetsuo
Kawakami, Yoshiiku
Ueno, Masaki
Gotoh, Kunihito
Ariizumi, Shun-ichi
Shibuya, Tetsuo
Nakano, Kaoru
Sasaki, Aya
Maejima, Kazuhiro
Kitada, Rina
Hayami, Shinya
Shigekawa, Yoshinobu
Marubashi, Shigeru
Yamada, Terumasa
Kubo, Michiaki
Ishikawa, Osamu
Aikata, Hiroshi
Arihiro, Koji
Ohdan, Hideki
Yamamoto, Masakazu
Yamaue, Hiroki
Chayama, Kazuaki
Tsunoda, Tatsuhiko
Miyano, Satoru
Nakagawa, Hidewaki
author_facet Shiraishi, Yuichi
Fujimoto, Akihiro
Furuta, Mayuko
Tanaka, Hiroko
Chiba, Ken-ichi
Boroevich, Keith A.
Abe, Tetsuo
Kawakami, Yoshiiku
Ueno, Masaki
Gotoh, Kunihito
Ariizumi, Shun-ichi
Shibuya, Tetsuo
Nakano, Kaoru
Sasaki, Aya
Maejima, Kazuhiro
Kitada, Rina
Hayami, Shinya
Shigekawa, Yoshinobu
Marubashi, Shigeru
Yamada, Terumasa
Kubo, Michiaki
Ishikawa, Osamu
Aikata, Hiroshi
Arihiro, Koji
Ohdan, Hideki
Yamamoto, Masakazu
Yamaue, Hiroki
Chayama, Kazuaki
Tsunoda, Tatsuhiko
Miyano, Satoru
Nakagawa, Hidewaki
author_sort Shiraishi, Yuichi
collection PubMed
description Recent studies applying high-throughput sequencing technologies have identified several recurrently mutated genes and pathways in multiple cancer genomes. However, transcriptional consequences from these genomic alterations in cancer genome remain unclear. In this study, we performed integrated and comparative analyses of whole genomes and transcriptomes of 22 hepatitis B virus (HBV)-related hepatocellular carcinomas (HCCs) and their matched controls. Comparison of whole genome sequence (WGS) and RNA-Seq revealed much evidence that various types of genomic mutations triggered diverse transcriptional changes. Not only splice-site mutations, but also silent mutations in coding regions, deep intronic mutations and structural changes caused splicing aberrations. HBV integrations generated diverse patterns of virus-human fusion transcripts depending on affected gene, such as TERT, CDK15, FN1 and MLL4. Structural variations could drive over-expression of genes such as WNT ligands, with/without creating gene fusions. Furthermore, by taking account of genomic mutations causing transcriptional aberrations, we could improve the sensitivity of deleterious mutation detection in known cancer driver genes (TP53, AXIN1, ARID2, RPS6KA3), and identified recurrent disruptions in putative cancer driver genes such as HNF4A, CPS1, TSC1 and THRAP3 in HCCs. These findings indicate genomic alterations in cancer genome have diverse transcriptomic effects, and integrated analysis of WGS and RNA-Seq can facilitate the interpretation of a large number of genomic alterations detected in cancer genome.
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spelling pubmed-42722592014-12-26 Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers Shiraishi, Yuichi Fujimoto, Akihiro Furuta, Mayuko Tanaka, Hiroko Chiba, Ken-ichi Boroevich, Keith A. Abe, Tetsuo Kawakami, Yoshiiku Ueno, Masaki Gotoh, Kunihito Ariizumi, Shun-ichi Shibuya, Tetsuo Nakano, Kaoru Sasaki, Aya Maejima, Kazuhiro Kitada, Rina Hayami, Shinya Shigekawa, Yoshinobu Marubashi, Shigeru Yamada, Terumasa Kubo, Michiaki Ishikawa, Osamu Aikata, Hiroshi Arihiro, Koji Ohdan, Hideki Yamamoto, Masakazu Yamaue, Hiroki Chayama, Kazuaki Tsunoda, Tatsuhiko Miyano, Satoru Nakagawa, Hidewaki PLoS One Research Article Recent studies applying high-throughput sequencing technologies have identified several recurrently mutated genes and pathways in multiple cancer genomes. However, transcriptional consequences from these genomic alterations in cancer genome remain unclear. In this study, we performed integrated and comparative analyses of whole genomes and transcriptomes of 22 hepatitis B virus (HBV)-related hepatocellular carcinomas (HCCs) and their matched controls. Comparison of whole genome sequence (WGS) and RNA-Seq revealed much evidence that various types of genomic mutations triggered diverse transcriptional changes. Not only splice-site mutations, but also silent mutations in coding regions, deep intronic mutations and structural changes caused splicing aberrations. HBV integrations generated diverse patterns of virus-human fusion transcripts depending on affected gene, such as TERT, CDK15, FN1 and MLL4. Structural variations could drive over-expression of genes such as WNT ligands, with/without creating gene fusions. Furthermore, by taking account of genomic mutations causing transcriptional aberrations, we could improve the sensitivity of deleterious mutation detection in known cancer driver genes (TP53, AXIN1, ARID2, RPS6KA3), and identified recurrent disruptions in putative cancer driver genes such as HNF4A, CPS1, TSC1 and THRAP3 in HCCs. These findings indicate genomic alterations in cancer genome have diverse transcriptomic effects, and integrated analysis of WGS and RNA-Seq can facilitate the interpretation of a large number of genomic alterations detected in cancer genome. Public Library of Science 2014-12-19 /pmc/articles/PMC4272259/ /pubmed/25526364 http://dx.doi.org/10.1371/journal.pone.0114263 Text en © 2014 Shiraishi 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
Shiraishi, Yuichi
Fujimoto, Akihiro
Furuta, Mayuko
Tanaka, Hiroko
Chiba, Ken-ichi
Boroevich, Keith A.
Abe, Tetsuo
Kawakami, Yoshiiku
Ueno, Masaki
Gotoh, Kunihito
Ariizumi, Shun-ichi
Shibuya, Tetsuo
Nakano, Kaoru
Sasaki, Aya
Maejima, Kazuhiro
Kitada, Rina
Hayami, Shinya
Shigekawa, Yoshinobu
Marubashi, Shigeru
Yamada, Terumasa
Kubo, Michiaki
Ishikawa, Osamu
Aikata, Hiroshi
Arihiro, Koji
Ohdan, Hideki
Yamamoto, Masakazu
Yamaue, Hiroki
Chayama, Kazuaki
Tsunoda, Tatsuhiko
Miyano, Satoru
Nakagawa, Hidewaki
Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title_full Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title_fullStr Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title_full_unstemmed Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title_short Integrated Analysis of Whole Genome and Transcriptome Sequencing Reveals Diverse Transcriptomic Aberrations Driven by Somatic Genomic Changes in Liver Cancers
title_sort integrated analysis of whole genome and transcriptome sequencing reveals diverse transcriptomic aberrations driven by somatic genomic changes in liver cancers
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4272259/
https://www.ncbi.nlm.nih.gov/pubmed/25526364
http://dx.doi.org/10.1371/journal.pone.0114263
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