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The transcription factor POU3F2 regulates a gene coexpression network in brain tissue from patients with psychiatric disorders

  • Chao Chen
  • , Qingtuan Meng
  • , Yan Xia
  • , Chaodong Ding
  • , Le Wang
  • , Rujia Dai
  • , Lijun Cheng
  • , Preethi Gunaratne
  • , Richard A. Gibbs
  • , Shishi Min
  • , Cristian Coarfa
  • , Jeffrey G. Reid
  • , Chunling Zhang
  • , Chuan Jiao
  • , Yi Jiang
  • , Gina Giase
  • , Amber Thomas
  • , Dominic Fitzgerald
  • , Tonya Brunetti
  • , Annie Shieh
  • Cuihua Xia, Yongjun Wang, Yunpeng Wang, Judith A. Badner, Elliot S. Gershon, Kevin P. White, Chunyu Liu
  • Central South University
  • SUNY Upstate Medical University
  • Rutgers - The State University of New Jersey, New Brunswick
  • The University of Chicago
  • University of Houston
  • Baylor College of Medicine
  • Regeneron Pharmaceuticals, Inc.
  • Vanderbilt University
  • University of Illinois at Chicago
  • University of Colorado Anschutz Medical Campus
  • University of Oslo
  • Rush University Medical Center
  • Tempus Labs, Inc.

Research output: Contribution to journalArticlepeer-review

80 Scopus citations

Abstract

Schizophrenia and bipolar disorder are complex psychiatric diseases with risks contributed by multiple genes. Dysregulation of gene expression has been implicated in these disorders, but little is known about such dysregulation in the human brain. We analyzed three transcriptome datasets from 394 postmortem brain tissue samples from patients with schizophrenia or bipolar disorder or from healthy control individuals without a known history of psychiatric disease. We built genome-wide coexpression networks that included microRNAs (miRNAs). We identified a coexpression network module that was differentially expressed in the brain tissue from patients compared to healthy control individuals. This module contained genes that were principally involved in glial and neural cell genesis and glial cell differentiation, and included schizophrenia risk genes carrying rare variants. This module included five miRNAs and 545 mRNAs, with six transcription factors serving as hub genes in this module. We found that the most connected transcription factor gene POU3F2, also identified on a genome-wide association study for bipolar disorder, could regulate the miRNA hsa-miR-320e and other putative target mRNAs. These regulatory relationships were replicated using PsychENCODE/BrainGVEX datasets and validated by knockdown and overexpression experiments in SH-SY5Y cells and human neural progenitor cells in vitro. Thus, we identified a brain gene expression module that was enriched for rare coding variants in genes associated with schizophrenia and that contained the putative bipolar disorder risk gene POU3F2. The transcription factor POU3F2 may be a key regulator of gene expression in this disease-associated gene coexpression module.

Original languageEnglish
Article numbereaat8178
JournalScience Translational Medicine
Volume10
Issue number472
DOIs
StatePublished - Dec 19 2018

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