MISC

2017年3月

High-resolution copy number variation analysis of schizophrenia in Japan

MOLECULAR PSYCHIATRY
  • I. Kushima
  • B. Aleksic
  • M. Nakatochi
  • T. Shimamura
  • T. Shiino
  • A. Yoshimi
  • H. Kimura
  • Y. Takasaki
  • C. Wang
  • J. Xing
  • K. Ishizuka
  • T. Oya-Ito
  • Y. Nakamura
  • Y. Arioka
  • T. Maeda
  • M. Yamamoto
  • M. Yoshida
  • H. Noma
  • S. Hamada
  • M. Morikawa
  • Y. Uno
  • T. Okada
  • T. Iidaka
  • S. Iritani
  • T. Yamamoto
  • M. Miyashita
  • A. Kobori
  • M. Arai
  • M. Itokawa
  • M-C Cheng
  • Y-A Chuang
  • C-H Chen
  • M. Suzuki
  • T. Takahashi
  • R. Hashimoto
  • H. Yamamori
  • Y. Yasuda
  • Y. Watanabe
  • A. Nunokawa
  • T. Someya
  • M. Ikeda
  • T. Toyota
  • T. Yoshikawa
  • S. Numata
  • T. Ohmori
  • S. Kunimoto
  • D. Mori
  • N. Iwata
  • N. Ozaki
  • 全て表示

22
3
開始ページ
430
終了ページ
440
記述言語
英語
掲載種別
速報,短報,研究ノート等(学術雑誌)
DOI
10.1038/mp.2016.88
出版者・発行元
NATURE PUBLISHING GROUP

Recent schizophrenia (SCZ) studies have reported an increased burden of de novo copy number variants (CNVs) and identified specific high-risk CNVs, although with variable phenotype expressivity. However, the pathogenesis of SCZ has not been fully elucidated. Using array comparative genomic hybridization, we performed a high-resolution genome-wide CNV analysis on a mainly (92%) Japanese population (1699 SCZ cases and 824 controls) and identified 7066 rare CNVs, 70.0% of which were small (< 100 kb). Clinically significant CNVs were significantly more frequent in cases than in controls (odds ratio = 3.04, P = 9.3 x 10 (-9), 9.0% of cases). We confirmed a significant association of X-chromosome aneuploidies with SCZ and identified 11 de novo CNVs (e. g., MBD5 deletion) in cases. In patients with clinically significant CNVs, 41.7% had a history of congenital/developmental phenotypes, and the rate of treatment resistance was significantly higher (odds ratio = 2.79, P = 0.0036). We found more severe clinical manifestations in patients with two clinically significant CNVs. Gene set analysis replicated previous findings (e. g., synapse, calcium signaling) and identified novel biological pathways including oxidative stress response, genomic integrity, kinase and small GTPase signaling. Furthermore, involvement of multiple SCZ candidate genes and biological pathways in the pathogenesis of SCZ was suggested in established SCZ-associated CNV loci. Our study shows the high genetic heterogeneity of SCZ and its clinical features and raises the possibility that genomic instability is involved in its pathogenesis, which may be related to the increased burden of de novo CNVs and variable expressivity of CNVs.

リンク情報
DOI
https://doi.org/10.1038/mp.2016.88
Web of Science
https://gateway.webofknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=JSTA_CEL&SrcApp=J_Gate_JST&DestLinkType=FullRecord&KeyUT=WOS:000394537100012&DestApp=WOS_CPL
ID情報
  • DOI : 10.1038/mp.2016.88
  • ISSN : 1359-4184
  • eISSN : 1476-5578
  • Web of Science ID : WOS:000394537100012

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