The relevance of copy number variations (CNVs), i.e. deletions and duplications in psychiatric disorders has recently been discovered. Large-scale genome surveys show an association between deletions on chromosomes 1q21.1 and 15q13.3 and schizophrenia with odds ratios of 7 to 18. We now propose generating two preclinical etiological models of schizophrenia using chromosome engineering to model these hemizygous deletions in murine embryonic stem cells and live animals. Mice carrying hemizygous deletions corresponding to those found in schizophrenic patients will undergo an initial behavioral characterization with an emphasis on examining sensorimotor gating and working memory deficits and are expected to be valuable tools for investigating the phenotypic potential of strong risk factors of schizophrenia and in particular the biological mechanisms underlying this increased risk.

Public Health Relevance

Schizophrenia is a severe mental disorder affecting approximately 1% percent of the population worldwide but our knowledge about the pathogenesis of the disease is critically limited. Based on human large-scale genome-wide surveys identifying an association between specific copy number variations on chromosomes 1q21.1 and 15q13.3 and schizophrenia, we will generate two novel etiological models of schizophrenia using chromosome engineering modeling these hemizygous deletions in mice. Examination of these mice will be important for increasing our understanding of the pathogenesis and pathophysiology of the disease and for the development of novel treatment strategies.

Agency
National Institute of Health (NIH)
Institute
National Institute of Mental Health (NIMH)
Type
Exploratory/Developmental Grants (R21)
Project #
5R21MH087829-02
Application #
8047994
Study Section
Molecular Neurogenetics Study Section (MNG)
Program Officer
Beckel-Mitchener, Andrea C
Project Start
2010-04-01
Project End
2013-06-30
Budget Start
2011-01-01
Budget End
2013-06-30
Support Year
2
Fiscal Year
2011
Total Cost
$234,630
Indirect Cost
Name
Mclean Hospital
Department
Type
DUNS #
046514535
City
Belmont
State
MA
Country
United States
Zip Code
02478
Li, Suyan; Uno, Yota; Rudolph, Uwe et al. (2018) Astrocytes in primary cultures express serine racemase, synthesize d-serine and acquire A1 reactive astrocyte features. Biochem Pharmacol 151:245-251
Rudolph, Uwe; Knoflach, Frederic (2011) Beyond classical benzodiazepines: novel therapeutic potential of GABAA receptor subtypes. Nat Rev Drug Discov 10:685-97