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Impact of Sema3A Interference on Cerebellum-Dependent Motor Associative Learning and Memory

  • Geoffrey Alexander Gimenez
  • , Sarah Van Der Zwaag
  • , Cynthia M. Geelen
  • , Melissa Van Hemert
  • , Jop Vreeken
  • , Fred de Winter
  • , Cathrin B. Canto
  • , Daniela Carulli
  • , Chris I. De Zeeuw
  • , Joost Verhaagen*
  • *Corresponding author for this work

Research output: Contribution to JournalArticleAcademicpeer-review

Abstract

Semaphorin 3A (Sema3A), a known axon chemorepulsive protein during development, is localised in perineuronal nets (PNNs) in the adult brain. PNNs are condensed aggregates of extracellular matrix molecules surrounding specific types of neurons, which regulate neuroplasticity and memory. However, the role of PNN-associated Sema3A in these processes remains unclear. To address this topic, we investigated the contribution of Sema3A to cerebellum-dependent learning and memory in adult mice using the eyeblink conditioning (EBC) paradigm. We interfered with Sema3A signalling by employing: (i) a molecular approach, in which secreted Sema3A receptors (neuropilin-1 bodies) were expressed in the anterior interposed nuclei (AIN) via viral vector injection; and (ii) a genetic approach, using mutant mice with impaired Sema3A signalling (K108N mice). Mice expressing neuropilin-1 bodies showed reduced EBC performance at the beginning of the memory retention phase. However, increased inflammation was found in the AIN of these mice, challenging the interpretation of these findings. K108N mice showed enhanced EBC performance at the beginning of the memory retention phase. No synaptic structural changes were detected in the AIN of K108N mice at the end of the EBC paradigm. Based on our findings in K108N mice, constitutively altered Sema3A signalling is associated with subtle improvement in cerebellar memory.

Original languageEnglish
Article number5304
Pages (from-to)1-27
Number of pages27
JournalInternational Journal of Molecular Sciences
Volume27
Issue number12
Early online date11 Jun 2026
DOIs
Publication statusPublished - Jun 2026

Bibliographical note

Publisher Copyright:
© 2026 by the authors.

Keywords

  • cerebellar nuclei
  • eyeblink conditioning
  • neuroplasticity
  • perineuronal nets
  • semaphorin 3A

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