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Neuropeptide F inhibits dopamine neuron interference of long-term memory consolidation in Drosophila.


ABSTRACT: Long-term memory (LTM) formation requires consolidation processes to overcome interfering signals that erode memory formation. Olfactory memory in Drosophila involves convergent projection neuron (PN; odor) and dopaminergic neuron (DAN; reinforcement) input to the mushroom body (MB). How post-training DAN activity in the posterior lateral protocerebrum (PPL1) continues to regulate memory consolidation remains unknown. Here we address this question using targeted transgenes in behavior and electrophysiology experiments to show that (1) persistent post-training activity of PPL1-α2α'2 and PPL1-α3 DANs interferes with aversive LTM formation; (2) neuropeptide F (NPF) signaling blocks this interference in PPL1-α2α'2 and PPL1-α3 DANs after spaced training to enable LTM formation; and (3) training-induced NPF release and neurotransmission from two upstream dorsal-anterior-lateral (DAL2) neurons are required to form LTM. Thus, NPF signals from DAL2 neurons to specific PPL1 DANs disinhibit the memory circuit, ensuring that periodic events are remembered as consolidated LTM.

SUBMITTER: Feng KL 

PROVIDER: S-EPMC8661542 | biostudies-literature | 2021 Dec

REPOSITORIES: biostudies-literature

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Neuropeptide F inhibits dopamine neuron interference of long-term memory consolidation in <i>Drosophila</i>.

Feng Kuan-Lin KL   Weng Ju-Yun JY   Chen Chun-Chao CC   Abubaker Mohammed Bin MB   Lin Hsuan-Wen HW   Charng Ching-Che CC   Lo Chung-Chuan CC   de Belle J Steven JS   Tully Tim T   Lien Cheng-Chang CC   Chiang Ann-Shyn AS  

iScience 20211125 12


Long-term memory (LTM) formation requires consolidation processes to overcome interfering signals that erode memory formation. Olfactory memory in <i>Drosophila</i> involves convergent projection neuron (PN; odor) and dopaminergic neuron (DAN; reinforcement) input to the mushroom body (MB). How post-training DAN activity in the posterior lateral protocerebrum (PPL1) continues to regulate memory consolidation remains unknown. Here we address this question using targeted transgenes in behavior and  ...[more]

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