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Dysbindin links presynaptic proteasome function to homeostatic recruitment of low release probability vesicles

Author

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  • Corinna Wentzel

    (University of Zurich)

  • Igor Delvendahl

    (University of Zurich)

  • Sebastian Sydlik

    (University of Zurich
    Zurich Ph.D. Program in Molecular Life Sciences)

  • Oleg Georgiev

    (University of Zurich)

  • Martin Müller

    (University of Zurich
    Zurich Ph.D. Program in Molecular Life Sciences
    Neuroscience Center Zurich)

Abstract

Here we explore the relationship between presynaptic homeostatic plasticity and proteasome function at the Drosophila neuromuscular junction. First, we demonstrate that the induction of homeostatic plasticity is blocked after presynaptic proteasome perturbation. Proteasome inhibition potentiates release under baseline conditions but not during homeostatic plasticity, suggesting that proteasomal degradation and homeostatic plasticity modulate a common pool of vesicles. The vesicles that are regulated by proteasome function and recruited during homeostatic plasticity are highly EGTA sensitive, implying looser Ca2+ influx-release coupling. Similar to homeostatic plasticity, proteasome perturbation enhances presynaptic Ca2+ influx, readily-releasable vesicle pool size, and does not potentiate release after loss of specific homeostatic plasticity genes, including the schizophrenia-susceptibility gene dysbindin. Finally, we provide genetic evidence that Dysbindin levels regulate the access to EGTA-sensitive vesicles. Together, our data suggest that presynaptic protein degradation opposes the release of low-release probability vesicles that are potentiated during homeostatic plasticity and whose access is controlled by dysbindin.

Suggested Citation

  • Corinna Wentzel & Igor Delvendahl & Sebastian Sydlik & Oleg Georgiev & Martin Müller, 2018. "Dysbindin links presynaptic proteasome function to homeostatic recruitment of low release probability vesicles," Nature Communications, Nature, vol. 9(1), pages 1-16, December.
  • Handle: RePEc:nat:natcom:v:9:y:2018:i:1:d:10.1038_s41467-017-02494-0
    DOI: 10.1038/s41467-017-02494-0
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