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Genetic Control of Myelin Plasticity after Chronic Psychosocial Stress

  • Mikaela A Laine
  • , Kalevi Trontti
  • , Zuzanna Misiewicz
  • , Ewa Sokolowska
  • , Natalia Kulesskaya
  • , Aino Heikkinen
  • , Suvi Saarnio
  • , Ingrid Balcells
  • , Pierre Ameslon
  • , Dario Greco
  • , Pirkko Mattila
  • , Pekka Ellonen
  • , Lars Paulin
  • , Petri Auvinen
  • , Eija Jokitalo
  • , Iiris Hovatta

Research output: Contribution to journalArticleScientificpeer-review

54 Citations (Scopus)

Abstract

Anxiety disorders often manifest in genetically susceptible individuals after psychosocial stress, but the mechanisms underlying these gene-environment interactions are largely unknown. We used the chronic social defeat stress (CSDS) mouse model to study resilience and susceptibility to chronic psychosocial stress. We identified a strong genetic background effect in CSDS-induced social avoidance (SA) using four inbred mouse strains: 69% of C57BL/6NCrl (B6), 23% of BALB/cAnNCrl, 19% of 129S2/SvPasCrl, and 5% of DBA/2NCrl (D2) mice were stress resilient. Furthermore, different inbred mouse strains responded differently to stress, suggesting they use distinct coping strategies. To identify biological pathways affected by CSDS, we used RNA-sequencing (RNA-seq) of three brain regions of two strains, B6 and D2: medial prefrontal cortex (mPFC), ventral hippocampus (vHPC), and bed nucleus of the stria terminalis (BNST). We discovered overrepresentation of oligodendrocyte (OLG)-related genes in the differentially expressed gene population. Because OLGs myelinate axons, we measured myelin thickness and found significant region and strain-specific differences. For example, in resilient D2 mice, mPFC axons had thinner myelin than controls, whereas susceptible B6 mice had thinner myelin than controls in the vHPC. Neither myelin-related gene expression in several other regions nor corpus callosum thickness differed between stressed and control animals. Our unbiased gene expression experiment suggests that myelin plasticity is a substantial response to chronic psychosocial stress, varies across brain regions, and is genetically controlled. Identification of genetic regulators of the myelin response will provide mechanistic insight into the molecular basis of stress-related diseases, such as anxiety disorders, a critical step in developing targeted therapy.

Original languageEnglish
Number of pages16
JournaleNeuro
Volume5
Issue number4
DOIs
Publication statusPublished - 2018
Externally publishedYes
Publication typeA1 Journal article-refereed

Keywords

  • Animals
  • Anxiety Disorders/etiology
  • Behavior, Animal/physiology
  • Disease Models, Animal
  • Gene Expression/physiology
  • Hippocampus/metabolism
  • Male
  • Mice
  • Mice, 129 Strain
  • Mice, Inbred BALB C
  • Mice, Inbred C57BL
  • Mice, Inbred DBA
  • Microscopy, Electron, Transmission
  • Myelin Sheath/metabolism
  • Oligodendroglia/metabolism
  • Prefrontal Cortex/metabolism
  • Resilience, Psychological
  • Septal Nuclei/metabolism
  • Sequence Analysis, RNA
  • Stress, Psychological/complications

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