4.8 Article

Synaptic activity controls localization and function of CtBP1 via binding to Bassoon and Piccolo

Journal

EMBO JOURNAL
Volume 34, Issue 8, Pages 1056-1077

Publisher

WILEY
DOI: 10.15252/embj.201488796

Keywords

cellular NAD/NADH balance; neuronal activity-regulated gene expression; neuronal plasticity; presynapse-to-nucleus signaling; synapto-nuclear shuttling

Funding

  1. DFG [SFB779/B9, GRK 1167, AL1115/1-1, FE1335/1]
  2. ERANET Neuron [FKZ 01EW1101]
  3. Leibniz Association
  4. Schram Foundation
  5. Federal State of Saxony-Anhalt (CBBS)

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Persistent experience-driven adaptation of brain function is associated with alterations in gene expression patterns, resulting in structural and functional neuronal remodeling. How synaptic activity-in particular presynaptic performance-is coupled to gene expression in nucleus remains incompletely understood. Here, we report on a role of CtBP1, a transcriptional co-repressor enriched in presynapses and nuclei, in the activity-driven reconfiguration of gene expression in neurons. We demonstrate that presynaptic and nuclear pools of CtBP1 are interconnected and that both synaptic retention and shuttling of CtBP1 between cytoplasm and nucleus are co-regulated by neuronal activity. Finally, we show that CtBP1 is targeted and/or anchored to presynapses by direct interaction with the active zone scaffolding proteins Bassoon and Piccolo. This association is regulated by neuronal activity via modulation of cellular NAD/NADH levels and restrains the size of the CtBP1 pool available for nuclear import, thus contributing to the control of activity-dependent gene expression. Our combined results reveal a mechanism for coupling activity-induced molecular rearrangements in the presynapse with reconfiguration of neuronal gene expression.

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