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Loss of BDNF or its receptors in three mouse models has unpredictable consequences for anxiety and fear acquisition

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TLDR
The combined data illustrate an apparent paradox in the role of the BDNF system in controlling complex behavior and suggest that the individual components may also engage independently in separate signaling pathways.
Abstract
BDNF-induced signaling is essential for the development of the central nervous system and critical for plasticity in adults. Mature BDNF signals through TrkB, while its precursor proBDNF employs p75(NTR), resulting in activation of signaling cascades with opposite effects on neuronal survival, growth cone decisions, and synaptic plasticity. Accordingly, variations in the genes encoding BDNF and its receptors sometimes have opposing influences in psychiatric disorders, and despite the vast literature, consensus is lacking about the behavioral consequences of disrupting the activity of the BDNF system in mice. To dissect the behavioral traits affected by dysfunctional BDNF/TrkB vs. proBDNF/p75(NTR) activity, we studied Bdnf(+/-), Ntrk2(+/-), and Ngfr(-/-) mice in parallel with respect to exploratory behavior, anxiety, startle, and fear acquisition. Our data reveal that the effect of proBDNF/BDNF and its receptors on behavior is more complex than expected. Strikingly, receptor-deficient mice displayed increased risk-taking behavior in the open field and elevated plus maze, whereas lack of proBDNF/BDNF had the opposite effect on mouse behavior. On the other hand, although TrkB signaling is instrumental for acquisition of fear memory in an inhibitory avoidance experiment, lack of p75(NTR) or proBDNF/BDNF conferred increased memory in this task. Importantly, none of the genotypes displayed any deficits in startle reflex, indicating unimpaired response to shock. The combined data illustrate an apparent paradox in the role of the BDNF system in controlling complex behavior and suggest that the individual components may also engage independently in separate signaling pathways.

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OCD-like behavior is caused by dysfunction of thalamo-amygdala circuits and upregulated TrkB/ERK-MAPK signaling as a result of SPRED2 deficiency

TL;DR: This study identifies SPRED2 as a promising new regulator, TrkB/ERK-MAPK signaling as a novel mediating mechanism, and thalamo-amygdala synapses as critical circuitry involved in the pathogenesis of OCD.
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A decade from discovery to therapy: Lingo-1, the dark horse in neurological and psychiatric disorders.

TL;DR: A complete and thorough review of the implications of Lingo-1 signaling in a wide range of neurological and psychiatric disorders, and critically examine its potential as a novel therapeutic target for these disorders.
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The Neurotrophic Factor Receptor p75 in the Rat Dorsolateral Striatum Drives Excessive Alcohol Drinking

TL;DR: It is shown that a history of excessive alcohol intake produces neuroadaptations in the DLS that preclude BDNF's ability to gate alcohol self-administration in rats by the recruitment of the low-affinity neurotrophin receptor, p75NTR, whose activities opposes those of the Trk receptors.
Journal ArticleDOI

PROneurotrophins and CONSequences.

TL;DR: The processes behind proneurotrophin action, with particular focus on proBDNF and proNGF and their regulatory pathways are discussed, and an increase of pro- to mature neurotrophin ratio has been described as a trigger of cell death.
Journal ArticleDOI

Comprehensive behavioral study and proteomic analyses of CRMP2-deficient mice.

TL;DR: This study implies that dysregulation of CRMP2 may be involved in pathophysiology of neuropsychiatric disorders and induces methamphetamine‐induced behavioral change of crmp2−/− mice.
References
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Journal ArticleDOI

Trk receptors: roles in neuronal signal transduction.

TL;DR: The most fascinating aspect of Trk receptor-mediated signaling is its interplay with signaling promoted by the pan-neurotrophin receptor p75NTR, which activates a distinct set of signaling pathways within cells that are in some instances synergistic and in other instances antagonistic to those activated by Trk receptors.
Journal ArticleDOI

Neurotrophins and their receptors: a convergence point for many signalling pathways.

TL;DR: Recent findings that neurotrophins, in addition to promoting survival and differentiation, exert various effects through surprising interactions with other receptors and ion channels are reviewed.
Journal ArticleDOI

Neurotrophin regulation of neural circuit development and function

TL;DR: Some of the recent progress in understanding the cellular and molecular mechanisms underlying neurotrophin regulation of neural circuits are summarized in this Review.
Journal ArticleDOI

Genetic variant BDNF (Val66Met) polymorphism alters anxiety-related behavior

TL;DR: A variant BDNF mouse (BDNFMet/Met) is generated that reproduces the phenotypic hallmarks in humans with the variant allele and may play a key role in genetic predispositions to anxiety and depressive disorders.
Journal ArticleDOI

Cleavage of proBDNF by tPA/plasmin is essential for long-term hippocampal plasticity.

TL;DR: In this article, tissue plasminogen activator (tPA) and brain-derived neurotrophic factor (BDNF) have been implicated in the late-phase long-term potentiation (L-LTP) process.
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