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◇ bioRxiv2026-09-01· neuroscience

MHC class II in dopaminergic neurons prunes GABAergic synapses in neurodevelopmental disorders

G. Murakami, M. Hirasaki, M. Hashizume, A. Hirao, R. Ito, Y. Hojo, T. Nakano, N. Uozumi, T. Murakoshi

原始摘要(英文原文)· Original abstract
Although the brain was traditionally considered immune-privileged, recent studies show immune factors play key roles in brain function. Dysfunction of these factors is linked to neurodevelopmental disorders, but mechanisms remain unclear. Using a maternal immune activation (MIA) mouse model, we investigated immune-related genes in neurodevelopmental disorder pathogenesis. MIA mice showed increased locomotor activity and disrupted prepulse inhibition. RNA-seq and qPCR analyses revealed persistent increases in major histocompatibility complex class II (MHCII) expression and persistent decreases in GABAergic synapse-related gene expression, particularly glutamate decarboxylase (Gad) expression, in dopaminergic regions. These expressions were negatively correlated, and immunohistochemistry showed MHCII at postsynaptic GABAergic synapses on dopaminergic neurons. Patch-clamp recordings confirmed reduced mIPSC frequency in MIA mice. MHCII knockout mice showed opposite phenotypes, while MHCII overexpression in dopaminergic neurons decreased Gad expression. These results suggest MIA-induced MHCII upregulation enhances pruning of GABAergic synapses on dopaminergic neurons, leading to behavioral deficits.
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MHC class II in dopaminergic neurons prunes GABAergic synapses in neurodevelopmental disorders — 科研速览 Science Skim