| Literature DB >> 28078450 |
Shintaro Fukushima1,2, Satoshi Yamashita3, Hisato Kobayashi4, Hirokazu Takami1,5, Kohei Fukuoka1, Taishi Nakamura1,6, Kai Yamasaki1, Yuko Matsushita1,7, Hiromi Nakamura8, Yasushi Totoki8, Mamoru Kato9, Tomonari Suzuki10, Kazuhiko Mishima10, Takaaki Yanagisawa10,11, Akitake Mukasa5, Nobuhito Saito5, Masayuki Kanamori12, Toshihiro Kumabe12,13, Teiji Tominaga12, Motoo Nagane14, Toshihiko Iuchi15, Koji Yoshimoto16, Masahiro Mizoguchi16, Kaoru Tamura17, Keiichi Sakai18,19, Kazuhiko Sugiyama20, Mitsutoshi Nakada21, Kiyotaka Yokogami22, Hideo Takeshima22, Yonehiro Kanemura23, Masahide Matsuda24, Akira Matsumura24, Kazuhiko Kurozumi25, Keisuke Ueki26, Masahiro Nonaka6, Akio Asai6, Nobutaka Kawahara27, Yuichi Hirose28, Tatusya Takayama29, Yoichi Nakazato30, Yoshitaka Narita7, Tatsuhiro Shibata8,31, Masao Matsutani10, Toshikazu Ushijima3, Ryo Nishikawa10, Koichi Ichimura32.
Abstract
Intracranial germ cell tumors (iGCTs) are the second most common brain tumors among children under 14 in Japan. The World Health Organization classification recognizes several subtypes of iGCTs, which are conventionally subclassified into pure germinoma or non-germinomatous GCTs. Recent exhaustive genomic studies showed that mutations of the genes involved in the MAPK and/or PI3K pathways are common in iGCTs; however, the mechanisms of how different subtypes develop, often as a mixed-GCT, are unknown. To elucidate the pathogenesis of iGCTs, we investigated 61 GCTs of various subtypes by genome-wide DNA methylation profiling. We showed that pure germinomas are characterized by global low DNA methylation, a unique epigenetic feature making them distinct from all other iGCTs subtypes. The patterns of methylation strongly resemble that of primordial germ cells (PGC) at the migration phase, possibly indicating the cell of origin for these tumors. Unlike PGC, however, hypomethylation extends to long interspersed nuclear element retrotransposons. Histologically and epigenetically distinct microdissected components of mixed-GCTs shared identical somatic mutations in the MAPK or PI3K pathways, indicating that they developed from a common ancestral cell.Entities:
Keywords: Germinoma; Global low DNA methylation; LINE1 hypomethylation; Primordial germ cell; iGCT
Mesh:
Substances:
Year: 2017 PMID: 28078450 DOI: 10.1007/s00401-017-1673-2
Source DB: PubMed Journal: Acta Neuropathol ISSN: 0001-6322 Impact factor: 17.088