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Altered axonal targeting and short-term plasticity in the hippocampus of Disc1 mutant mice

  • Mirna Kvajo
  • , Heather McKellar
  • , Liam J. Drew
  • , Aude Marie Lepagnol-Bestel
  • , Lan Xiao
  • , Rebecca J. Levy
  • , Richard Blazeski
  • , P. Alexander Arguello
  • , Clay O. Lacefield
  • , Carol A. Mason
  • , Michel Simonneau
  • , James M. O'Donnell
  • , Amy B. MacDermott
  • , Maria Karayiorgou
  • , Joseph A. Gogos
  • Columbia University
  • Commissariat à l’énergie atomique et aux énergies alternatives
  • West Virginia University
  • Institut national de la santé et de la recherche médicale

Research output: Contribution to journalArticlepeer-review

94 Scopus citations

Abstract

Carefully designed animal models of genetic risk factors are likely to aid our understanding of the pathogenesis of schizophrenia. Here, we study a mouse strain with a truncating lesion in the endogenous Disc1 ortholog designed to model the effects of a schizophreniapredisposing mutation and offer a detailed account of the consequences that this mutation has on the development and function of a hippocampal circuit. We uncover widespread and cumulative cytoarchitectural alterations in the dentate gyrus during neonatal and adult neurogenesis, which include errors in axonal targeting and are accompanied by changes in short-term plasticity at the mossy fiber/CA3 circuit. We also provide evidence that cAMP levels are elevated as a result of the Disc1 mutation, leading to altered axonal targeting and dendritic growth. The identified structural alterations are, for the most part, not consistent with the growthpromoting and premature maturation effects inferred from previous RNAi-based Disc1 knockdown. Our results provide support to the notion that modest disturbances of neuronal connectivity and accompanying deficits in short-term synaptic dynamics is a general feature of schizophrenia-predisposing mutations.

Original languageEnglish
Pages (from-to)E1349-E1358
JournalProceedings of the National Academy of Sciences of the United States of America
Volume108
Issue number49
DOIs
StatePublished - Dec 6 2011

Keywords

  • Mouse model
  • Psychiatric disease
  • Rare mutation

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