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Forebrain excitatory neuron-specific loss of Brpf1 attenuates excitatory synaptic transmission and impairs spatial and fear memory.

Authors :
Zhao B
Zhang H
Liu Y
Zu G
Zhang Y
Hu J
Liu S
You L
Source :
Neural regeneration research [Neural Regen Res] 2024 May; Vol. 19 (5), pp. 1133-1141.
Publication Year :
2024

Abstract

Bromodomain and plant homeodomain (PHD) finger containing protein 1 (Brpf1) is an activator and scaffold protein of a multiunit complex that includes other components involving lysine acetyltransferase (KAT) 6A/6B/7. Brpf1, KAT6A, and KAT6B mutations were identified as the causal genes of neurodevelopmental disorders leading to intellectual disability. Our previous work revealed strong and specific expression of Brpf1 in both the postnatal and adult forebrain, especially the hippocampus, which has essential roles in learning and memory. Here, we hypothesized that Brpf1 plays critical roles in the function of forebrain excitatory neurons, and that its deficiency leads to learning and memory deficits. To test this, we knocked out Brpf1 in forebrain excitatory neurons using CaMKIIa-Cre. We found that Brpf1 deficiency reduced the frequency of miniature excitatory postsynaptic currents and downregulated the expression of genes Pcdhgb1, Slc16a7, Robo3, and Rho, which are related to neural development, synapse function, and memory, thereby damaging spatial and fear memory in mice. These findings help explain the mechanisms of intellectual impairment in patients with BRPF1 mutation.<br />Competing Interests: None

Details

Language :
English
ISSN :
1673-5374
Volume :
19
Issue :
5
Database :
MEDLINE
Journal :
Neural regeneration research
Publication Type :
Academic Journal
Accession number :
37862219
Full Text :
https://doi.org/10.4103/1673-5374.385307