Literature DB >> 21296667

Forebrain CRHR1 deficiency attenuates chronic stress-induced cognitive deficits and dendritic remodeling.

Xiao-Dong Wang1, Yuncai Chen, Miriam Wolf, Klaus V Wagner, Claudia Liebl, Sebastian H Scharf, Daniela Harbich, Bianca Mayer, Wolfgang Wurst, Florian Holsboer, Jan M Deussing, Tallie Z Baram, Marianne B Müller, Mathias V Schmidt.   

Abstract

Chronic stress evokes profound structural and molecular changes in the hippocampus, which may underlie spatial memory deficits. Corticotropin-releasing hormone (CRH) and CRH receptor 1 (CRHR1) mediate some of the rapid effects of stress on dendritic spine morphology and modulate learning and memory, thus providing a potential molecular basis for impaired synaptic plasticity and spatial memory by repeated stress exposure. Using adult male mice with CRHR1 conditionally inactivated in the forebrain regions, we investigated the role of CRH-CRHR1 signaling in the effects of chronic social defeat stress on spatial memory, the dendritic morphology of hippocampal CA3 pyramidal neurons, and the hippocampal expression of nectin-3, a synaptic cell adhesion molecule important in synaptic remodeling. In chronically stressed wild-type mice, spatial memory was disrupted, and the complexity of apical dendrites of CA3 neurons reduced. In contrast, stressed mice with forebrain CRHR1 deficiency exhibited normal dendritic morphology of CA3 neurons and mild impairments in spatial memory. Additionally, we showed that the expression of nectin-3 in the CA3 area was regulated by chronic stress in a CRHR1-dependent fashion and associated with spatial memory and dendritic complexity. Moreover, forebrain CRHR1 deficiency prevented the down-regulation of hippocampal glucocorticoid receptor expression by chronic stress but induced increased body weight gain during persistent stress exposure. These findings underscore the important role of forebrain CRH-CRHR1 signaling in modulating chronic stress-induced cognitive, structural and molecular adaptations, with implications for stress-related psychiatric disorders.
Copyright © 2011 Elsevier Inc. All rights reserved.

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Year:  2011        PMID: 21296667      PMCID: PMC3200197          DOI: 10.1016/j.nbd.2011.01.020

Source DB:  PubMed          Journal:  Neurobiol Dis        ISSN: 0969-9961            Impact factor:   5.996


  74 in total

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Authors:  Cheryl D Conrad
Journal:  Behav Cogn Neurosci Rev       Date:  2006-03

4.  Cellular and molecular mechanisms of hippocampal activation by acute stress are age-dependent.

Authors:  Y Chen; K A Fenoglio; C M Dubé; D E Grigoriadis; T Z Baram
Journal:  Mol Psychiatry       Date:  2006-06-27       Impact factor: 15.992

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  64 in total

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Review 2.  Evidence for the role of corticotropin-releasing factor in major depressive disorder.

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5.  Corticotropin-releasing factor and urocortin I activate CREB through functionally selective Gβγ signaling in hippocampal pyramidal neurons.

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Journal:  Eur J Neurosci       Date:  2011-08-08       Impact factor: 3.386

6.  FKBP51 inhibits GSK3β and augments the effects of distinct psychotropic medications.

Authors:  N C Gassen; J Hartmann; A S Zannas; A Kretzschmar; J Zschocke; G Maccarrone; K Hafner; A Zellner; L K Kollmannsberger; K V Wagner; D Mehta; S Kloiber; C W Turck; S Lucae; G P Chrousos; F Holsboer; E B Binder; M Ising; M V Schmidt; T Rein
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7.  3xTg-AD mice exhibit an activated central stress axis during early-stage pathology.

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8.  Differences in FKBP51 regulation following chronic social defeat stress correlate with individual stress sensitivity: influence of paroxetine treatment.

Authors:  Klaus V Wagner; Daria Marinescu; Jakob Hartmann; Xiao-Dong Wang; Christiana Labermaier; Sebastian H Scharf; Claudia Liebl; Manfred Uhr; Florian Holsboer; Marianne B Müller; Mathias V Schmidt
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9.  Forebrain glutamatergic, but not GABAergic, neurons mediate anxiogenic effects of the glucocorticoid receptor.

Authors:  J Hartmann; N Dedic; M L Pöhlmann; A Häusl; H Karst; C Engelhardt; S Westerholz; K V Wagner; C Labermaier; L Hoeijmakers; M Kertokarijo; A Chen; M Joëls; J M Deussing; M V Schmidt
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10.  Sex Differences in the Subcellular Distribution of Corticotropin-Releasing Factor Receptor 1 in the Rat Hippocampus following Chronic Immobilization Stress.

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