Full text 2026

Epigenetic treatment of synaptic and behavioral deficits in Dyrk1a-mutant mice

Lin CH, Yu M, Patel PJ, et al.

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Abstract

Haploinsufficiency of Dyrk1a, which encodes the dual-specificity tyrosine phosphorylation regulated kinase 1A (DYRK1A), has been causally linked to autism. Here we examined transcriptomic, electrophysiological and behavioral alterations in mice carrying a loss-of-function mutation of Dyrk1a (Dyrk<sup>mut</sup>). We found that genes downregulated in prefrontal cortex (PFC) of male and female Dyrk<sup>mut</sup> mice were enriched in chemical synaptic transmission and trans-synaptic signaling. In PFC pyramidal neurons of Dyrk<sup>mut</sup> mice, the frequency of synaptic-driven spontaneous action potentials (sAP) was significantly reduced, and glutamatergic excitatory postsynaptic currents (EPSC) and GABAergic inhibitory postsynaptic currents (IPSC) were markedly diminished. Furthermore, autism-like social preference deficits and elevated anxiety were manifested in Dyrk<sup>mut</sup> mice of both sexes. A short treatment of Dyrk<sup>mut</sup> mice with an inhibitor of the epigenetic corepressor lysine-specific histone demethylase 1A (LSD1) led to a significant elevation of sAP frequency, EPSC and IPSC in PFC pyramidal neurons of Dyrk<sup>mut</sup> mice. Moreover, the LSD1 inhibitor ameliorated social deficits in Dyrk<sup>mut</sup> mice and reduced anxiety in Dyrk<sup>mut</sup> males. Therefore, these data have not only revealed synaptic and behavioral deficits in PFC induced by Dyrk1a mutation, but also uncovered the therapeutic potential of LSD1 inhibition in Dyrk1a-deficient conditions.