Presynaptic NMDA receptors on mouse mossy fiber terminals mediate rapid BDNF release by ketamine and hydroxynorketamine
Atasoy-Rodriguez, I. L.; Johnson, K. W.; Patel, K.; Arain, H.; Zaidi, S.; Herold, K. F.; Milner, T. A.; Hemmings, H. C.; Platholi, J.
Show abstract
Major depressive disorder is associated with deficits in hippocampal synaptic plasticity that depend on brain-derived neurotrophic factor (BDNF) release from both axonal and dendritic compartments. Antidepressant efficacy requires enhanced BDNF signaling, thought to be mediated by drug-induced BDNF release from postsynaptic dendritic spines. Here, we show that fast-acting antidepressants rapidly trigger BDNF secretion from presynaptic terminals in hippocampal area CA3. At antidepressant-relevant concentrations, ketamine and its metabolite (2R,6R)-hydroxynorketamine (HNK) induced BDNF release within minutes from mossy fiber terminals of dentate granule neurons in rat hippocampal cultures, with no detectable secretion from dendritic spines. This antidepressant-evoked BDNF release required presynaptic NMDA receptors (preNMDARs). Conditional genetic deletion of preNMDARs from granule neurons abolished ketamine- and HNK-induced BDNF exocytosis in acute mouse hippocampal slices, establishing a presynaptic receptor mechanism for antidepressant-induced neurotrophin release. In CA3 pyramidal neurons that receive mossy fiber input, both compounds induced rapid remodeling of dendritic spines, resulting in increased spine density. Together, these findings identify presynaptic terminals as a previously unrecognized source of antidepressant-evoked BDNF release and establish a new cellular mechanism for the rapid synaptic effects of fast-acting antidepressants.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Aberrant hippocampal transmission and behavior in mice with a stargazin mutation linked to intellectual disability 97%
- Erythropoietin restrains the inhibitory potential of interneurons in the mouse hippocampus 97%
- Neural stem and progenitor cells support and protect adult hippocampal function via vascular endothelial growth factor secretion. 96%
Similar papers in this journal
Similar papers in this journal
- Endoplasmic reticulum visits highly active spines and prevents runaway potentiation of synapses 97%
- Abnormal AMPAR-mediated synaptic plasticity, cognitive and autistic-like behaviors in a missense Fmr1 mutant mouse model of Fragile X syndrome 97%
- Ketamine disinhibits dendrites and enhances calcium signals in prefrontal dendritic spines 96%
Similar papers in this journal
Similar papers in this journal
- Targeting acetyl-CoA metabolism attenuates the formation of fear memories through reduced activity-dependent histone acetylation 95%
- Dynamic extracellular interactions with AMPA receptors 94%
- S-Nitrosylation of CRTC1 in Alzheimer's disease impairs CREB-dependent gene expression induced by neuronal activity 94%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.