Literature DB >> 19887624

Epigenetic profiles distinguish malignant pleural mesothelioma from lung adenocarcinoma.

Yasuhiro Goto1, Keiko Shinjo, Yutaka Kondo, Lanlan Shen, Minoru Toyota, Hiromu Suzuki, Wentao Gao, Byonggu An, Makiko Fujii, Hideki Murakami, Hirotaka Osada, Tetsuo Taniguchi, Noriyasu Usami, Masashi Kondo, Yoshinori Hasegawa, Kaoru Shimokata, Keitaro Matsuo, Toyoaki Hida, Nobukazu Fujimoto, Takumi Kishimoto, Jean-Pierre J Issa, Yoshitaka Sekido.   

Abstract

Malignant pleural mesothelioma (MPM) is a fatal thoracic malignancy, the epigenetics of which are poorly defined. We performed high-throughput methylation analysis covering 6,157 CpG islands in 20 MPMs and 20 lung adenocarcinomas. Newly identified genes were further analyzed in 50 MPMs and 56 adenocarcinomas via quantitative methylation-specific PCR. Targets of histone H3 lysine 27 trimethylation (H3K27me3) and genetic alterations were also assessed in MPM cells by chromatin immunoprecipitation arrays and comparative genomic hybridization arrays. An average of 387 genes (6.3%) and 544 genes (8.8%) were hypermethylated in MPM and adenocarcinoma, respectively. Hierarchical cluster analysis showed that the two malignancies have characteristic DNA methylation patterns, likely a result of different pathologic processes. In MPM, a separate subset of genes was silenced by H3K27me3 and could be reactivated by treatment with a histone deacetylase inhibitor alone. Integrated analysis of these epigenetic and genetic alterations revealed that only 11% of heterozygously deleted genes were affected by DNA methylation and/or H3K27me3 in MPMs. Among the DNA hypermethylated genes, three (TMEM30B, KAZALD1, and MAPK13) were specifically methylated only in MPM and could serve as potential diagnostic markers. Interestingly, a subset of MPM cases (4 cases, 20%) had very low levels of DNA methylation and substantially longer survival, suggesting that the epigenetic alterations are one mechanism affecting progression of this disease. Our findings show a characteristic epigenetic profile of MPM and uncover multiple distinct epigenetic abnormalities that lead to the silencing of tumor suppressor genes in MPM and could serve as diagnostic or prognostic targets.

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Year:  2009        PMID: 19887624     DOI: 10.1158/0008-5472.CAN-09-1595

Source DB:  PubMed          Journal:  Cancer Res        ISSN: 0008-5472            Impact factor:   12.701


  34 in total

Review 1.  Identification of driver and passenger DNA methylation in cancer by epigenomic analysis.

Authors:  Satish Kalari; Gerd P Pfeifer
Journal:  Adv Genet       Date:  2010       Impact factor: 1.944

2.  DNMT3B7, a truncated DNMT3B isoform expressed in human tumors, disrupts embryonic development and accelerates lymphomagenesis.

Authors:  Mrinal Y Shah; Aparna Vasanthakumar; Natalie Y Barnes; Maria E Figueroa; Anna Kamp; Christopher Hendrick; Kelly R Ostler; Elizabeth M Davis; Shang Lin; John Anastasi; Michelle M Le Beau; Ivan P Moskowitz; Ari Melnick; Peter Pytel; Lucy A Godley
Journal:  Cancer Res       Date:  2010-06-29       Impact factor: 12.701

Review 3.  Targeting the epigenome in malignant pleural mesothelioma.

Authors:  Kaitlin C McLoughlin; Andrew S Kaufman; David S Schrump
Journal:  Transl Lung Cancer Res       Date:  2017-06

4.  DNA copy number gains in malignant pleural mesothelioma.

Authors:  Masashi Furukawa; Shinichi Toyooka; Tatsuro Hayashi; Hiromasa Yamamoto; Nobukazu Fujimoto; Junichi Soh; Shinsuke Hashida; Kazuhiko Shien; Hiroaki Asano; Keisuke Aoe; Kazunori Okabe; Harvey I Pass; Kazunori Tsukuda; Takumi Kishimoto; Shinichiro Miyoshi
Journal:  Oncol Lett       Date:  2015-08-27       Impact factor: 2.967

5.  Genome-wide analysis of DNA methylation identifies novel cancer-related genes in hepatocellular carcinoma.

Authors:  Masahiro Shitani; Shigeru Sasaki; Noriyuki Akutsu; Hideyasu Takagi; Hiromu Suzuki; Masanori Nojima; Hiroyuki Yamamoto; Takashi Tokino; Koichi Hirata; Kohzoh Imai; Minoru Toyota; Yasuhisa Shinomura
Journal:  Tumour Biol       Date:  2012-03-29

Review 6.  Dissecting DNA hypermethylation in cancer.

Authors:  Marcos R H Estécio; Jean-Pierre J Issa
Journal:  FEBS Lett       Date:  2010-12-10       Impact factor: 4.124

Review 7.  The role of redox signaling in epigenetics and cardiovascular disease.

Authors:  Gene H Kim; John J Ryan; Stephen L Archer
Journal:  Antioxid Redox Signal       Date:  2013-03-12       Impact factor: 8.401

8.  Characterization of DNA hypermethylation in two cases of peritoneal mesothelioma.

Authors:  Ryota Hama; Yoshiyuki Watanabe; Kanako Shinada; Yosuke Yamada; Yuka Ogata; Yoshihito Yoshida; Tomohiro Tamura; Tetsuya Hiraishi; Ritsuko Oikawa; Jo Sakurai; Tadateru Maehata; Hirotaka Koizumi; Fumio Itoh
Journal:  Tumour Biol       Date:  2012-07-27

Review 9.  New insights into understanding the mechanisms, pathogenesis, and management of malignant mesotheliomas.

Authors:  Brooke T Mossman; Arti Shukla; Nicholas H Heintz; Claire F Verschraegen; Anish Thomas; Raffit Hassan
Journal:  Am J Pathol       Date:  2013-02-08       Impact factor: 4.307

Review 10.  The function, mechanisms, and role of the genes PTEN and TP53 and the effects of asbestos in the development of malignant mesothelioma: a review focused on the genes' molecular mechanisms.

Authors:  Leonardo Vinícius Monteiro de Assis; Mauro César Isoldi
Journal:  Tumour Biol       Date:  2013-10-01
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