UBE3A expression during early postnatal brain development is required for proper dorsomedial striatal maturation

Diana C. Rotaru, Ilse Wallaard, Maud de Vries, Erasmus MC, Ype Elgersma*

*Corresponding author for this work

Research output: Contribution to journalArticleAcademicpeer-review

9 Citations (Scopus)
50 Downloads (Pure)

Abstract

Angelman syndrome (AS) is a severe neurodevelopmental disorder (NDD) caused by loss of functional ubiquitin protein ligase E3A (UBE3A). Previous studies showed that UBE3A plays an important role in the first postnatal weeks of mouse brain development, but its precise role is unknown. Since impaired striatal maturation has been implicated in several mouse models for NDDs, we studied the importance of UBE3A in striatal maturation. We used inducible Ube3a mouse models to investigate the maturation of medium spiny neurons (MSNs) from dorsomedial striatum. MSNs of mutant mice matured properly till postnatal day 15 (P15) but remained hyperexcitable with fewer excitatory synaptic events at later ages, indicative of stalled striatal maturation in Ube3a mice. Reinstatement of UBE3A expression at P21 fully restored MSN excitability but only partially restored synaptic transmission and the operant conditioning behavioral phenotype. Gene reinstatement at P70 failed to rescue both electrophysiological and behavioral phenotypes. In contrast, deletion of Ube3a after normal brain development did not result in these electrophysiological and behavioral phenotypes. This study emphasizes the role of UBE3A in striatal maturation and the importance of early postnatal reinstatement of UBE3A expression to obtain a full rescue of behavioral phenotypes associated with striatal function in AS.

Original languageEnglish
Article numbere166073
JournalJCI insight
Volume8
Issue number4
DOIs
Publication statusPublished - 22 Feb 2023

Bibliographical note

This work was supported by the AS Foundation: 10-2018 and Netherlands Organisation for Scientific Research NWO-ZonMw:
91216045.

Publisher Copyright: © 2023, Rotaru et al.

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