BACKGROUND: Stress is causally associated with anxiety. Although the underlying cellular mechanisms are not well understood, the basal forebrain cholinergic neurons have been implicated in stress response. p75(NTR) is a panneurotrophin receptor expressed almost exclusively in basal forebrain cholinergic neurons in adult brain. This study investigated whether and how p75(NTR), via regulation of the cholinergic system and hippocampal synaptic plasticity, influences stress-related behaviors. METHODS: We used a combination of slice electrophysiology, behavioral analyses, pharmacology, in vivo microdialysis, and neuronal activity mapping to assess the role of p75(NTR) in mood and stress-related behaviors and its underlying cellular and molecular mechanisms. RESULTS: We show that acute stress enables hippocampal long-term depression (LTD) in adult wild-type mice but not in mice lacking p75(NTR). The p75(NTR) mutant mice also exhibit two distinct behavioral impairments: baseline anxiety-like behavior and a deficit in coping with and recovering from stressful situations. Blockade of stress-enabled LTD with a GluA2-derived peptide impaired stress recovery without affecting baseline anxiety. Pharmacological manipulations of cholinergic transmission mimicked the p75(NTR) perturbation in both baseline anxiety and responses to acute stress. Finally, we show evidence of misregulated cholinergic signaling in animals with p75(NTR) deletion. CONCLUSIONS: Our results suggest that loss of p75(NTR) leads to changes in hippocampal cholinergic signaling, which may be involved in regulation of stress-enabled hippocampal LTD and in modulating behaviors related to stress and anxiety.
BACKGROUND: Stress is causally associated with anxiety. Although the underlying cellular mechanisms are not well understood, the basal forebrain cholinergic neurons have been implicated in stress response. p75(NTR) is a panneurotrophin receptor expressed almost exclusively in basal forebrain cholinergic neurons in adult brain. This study investigated whether and how p75(NTR), via regulation of the cholinergic system and hippocampal synaptic plasticity, influences stress-related behaviors. METHODS: We used a combination of slice electrophysiology, behavioral analyses, pharmacology, in vivo microdialysis, and neuronal activity mapping to assess the role of p75(NTR) in mood and stress-related behaviors and its underlying cellular and molecular mechanisms. RESULTS: We show that acute stress enables hippocampal long-term depression (LTD) in adult wild-type mice but not in mice lacking p75(NTR). The p75(NTR) mutant mice also exhibit two distinct behavioral impairments: baseline anxiety-like behavior and a deficit in coping with and recovering from stressful situations. Blockade of stress-enabled LTD with a GluA2-derived peptide impaired stress recovery without affecting baseline anxiety. Pharmacological manipulations of cholinergic transmission mimicked the p75(NTR) perturbation in both baseline anxiety and responses to acute stress. Finally, we show evidence of misregulated cholinergic signaling in animals with p75(NTR) deletion. CONCLUSIONS: Our results suggest that loss of p75(NTR) leads to changes in hippocampal cholinergic signaling, which may be involved in regulation of stress-enabled hippocampal LTD and in modulating behaviors related to stress and anxiety.
Authors: H Sienkiewicz-Jarosz; A I Członkowska; M Siemiatkowski; P Maciejak; J Szyndler; A Płaźnik Journal: J Neural Transm (Vienna) Date: 2000 Impact factor: 3.575
Authors: Karen Brebner; Tak Pan Wong; Lidong Liu; Yitao Liu; Paul Campsall; Sarah Gray; Lindsay Phelps; Anthony G Phillips; Yu Tian Wang Journal: Science Date: 2005-11-25 Impact factor: 47.728
Authors: Eric J Nestler; Michel Barrot; Ralph J DiLeone; Amelia J Eisch; Stephen J Gold; Lisa M Monteggia Journal: Neuron Date: 2002-03-28 Impact factor: 17.173
Authors: H Sienkiewicz-Jarosz; Piotr Maciejak; Paweł Krzaścik; Agnieszka I Członkowska; Janusz Szyndler; Andrzej Bidziński; Wojciech Kostowski; Adam Płaźnik Journal: Pharmacol Biochem Behav Date: 2003-05 Impact factor: 3.533
Authors: Eric M Prager; Volodymyr I Pidoplichko; Vassiliki Aroniadou-Anderjaska; James P Apland; Maria F M Braga Journal: Neurotoxicology Date: 2014-08-20 Impact factor: 4.294
Authors: Yann S Mineur; Matthew P Bentham; Wen-Liang Zhou; Margreet E Plantenga; Sherry A McKee; Marina R Picciotto Journal: Psychopharmacology (Berl) Date: 2015-07-07 Impact factor: 4.530
Authors: Robert J Schloesser; Dennisse V Jimenez; Nicholas F Hardy; Daniel Paredes; Briony J Catlow; Husseini K Manji; Ronald D McKay; Keri Martinowich Journal: Brain Struct Funct Date: 2013-03-13 Impact factor: 3.270
Authors: Yann S Mineur; Adetokunbo Obayemi; Mattis B Wigestrand; Gianna M Fote; Cali A Calarco; Alice M Li; Marina R Picciotto Journal: Proc Natl Acad Sci U S A Date: 2013-02-11 Impact factor: 11.205
Authors: Alex G Lee; Roxanne Capanzana; Jacqueline Brockhurst; Michelle Y Cheng; Christine L Buckmaster; Devin Absher; Alan F Schatzberg; David M Lyons Journal: Neurobiol Learn Mem Date: 2016-03-18 Impact factor: 2.877