Autocrine signaling by an <i>Aplysia</i> neurotrophin forms a presynaptic positive feedback loop.
basic_science · Level V
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- Record sourced from PubMed, PMID 30397154.
- Also identified by DOI 10.1073/pnas.1810649115 and PMC identifier 6255211.
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Abstract
Whereas short-term plasticity is often initiated on one side of the synapse, long-term plasticity involves coordinated changes on both sides, implying extracellular signaling. We have investigated the possible signaling role of an <i>Aplysia</i> neurotrophin (ApNT) in facilitation induced by serotonin (5HT) at sensory-to-motor neuron synapses in culture. ApNT is an ortholog of mammalian BDNF, which has been reported to act as either an anterograde, retrograde, or autocrine signal, so that its pre- and postsynaptic sources and targets remain unclear. We now report that ApNT acts as a presynaptic autocrine signal that forms part of a positive feedback loop with ApTrk and PKA. That loop stimulates spontaneous transmitter release, which recruits postsynaptic mechanisms, and presynaptic protein synthesis during the transition from short- to intermediate-term facilitation and may also initiate gene regulation to trigger the transition to long-term facilitation. These results suggest that a presynaptic ApNT feedback loop plays several key roles during consolidation of learning-related synaptic plasticity.
Medical subject headings
- Aplysia
- Autocrine Communication
- Cyclic AMP-Dependent Protein Kinases
- Nerve Growth Factors
- Receptor Protein-Tyrosine Kinases
- Synapses