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Postsynaptic plasticity of cholinergic synapses underlies the induction and expression of appetitive memories in Drosophila

Pribbenow, C.; Chen, Y.-c.; Heim, M.-M.; Laber, D.; Reubold, S.; Reynolds, E.; Balles, I.; Suarez Grimalt, R.; Rauch, C.; Roesner, J.; Fernandez-d.V. Alquicira, T.; Owald, D.

2021-07-02 neuroscience
10.1101/2021.07.01.450776 bioRxiv
Show abstract

In vertebrates, several forms of memory-relevant synaptic plasticity involve postsynaptic rearrangements of glutamate receptors. In contrast, previous work indicates that Drosophila and other invertebrates store memories using presynaptic plasticity of cholinergic synapses. Here, we provide evidence for postsynaptic plasticity at cholinergic output synapses from the Drosophila mushroom bodies (MBs). We find that the nicotinic acetylcholine receptor (nAChR) subunit 5 is required within specific MB output neurons (MBONs) for appetitive memory induction, but is dispensable for aversive memories. In addition, nAChR 2 subunits mediate memory expression and likely functions downstream of 5 and the postsynaptic scaffold protein Dlg. We show that postsynaptic plasticity traces can be induced independently of the presynapse, and that in vivo dynamics of 2 nAChR subunits are changed both in the context of associative and non-associative memory formation, underlying different plasticity rules. Therefore, regardless of neurotransmitter identity, key principles of postsynaptic plasticity support memory storage across phyla.

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