PTP?, encoded by PTPRD, is implicated in various neurological, psychiatric, and neurodevelopmental disorders, but the underlying mechanisms remain unclear. PTP? trans-synaptically interacts with multiple postsynaptic adhesion molecules, which involves its extracellular alternatively spliced mini-exons, meA and meB. While PTP?-meA functions have been studied in vivo, PTP?-meB has not been studied. Here, we report that, unlike homozygous PTP?-meA-mutant mice, homozygous PTP?-meB-mutant (Ptprd-meBβ/β) mice show markedly reduced early postnatal survival. Heterozygous Ptprd-meB+/β male mice show behavioral abnormalities and decreased excitatory synaptic density and transmission in dentate gyrus granule cells (DG-GCs). Proteomic analyses identify decreased postsynaptic density levels of IL1RAP, a known trans-synaptic partner of meB-containing PTP?. Accordingly, IL1RAP-mutant mice show decreased excitatory synaptic transmission in DG-GCs. Ptprd-meB+/β DG interneurons with minimal IL1RAP expression show increased excitatory synaptic density and transmission. Therefore, PTP?-meB is important for survival, synaptic, and behavioral phenotypes and regulates excitatory synapses in cell-type-specific and IL1RAP-dependent manners.
[doi:10.25345/C5QV3CF7J]
[dataset license: CC0 1.0 Universal (CC0 1.0)]
Keywords: Proteomics ; PTPRD ; hippocampal excitatory synapses ; presynaptic adhesion molecule ; neurodevelopmental disorders
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Principal Investigators: (in alphabetical order) |
Jin Young Kim, Korea Basic Science Institute, Rep. of Korea |
| Submitting User: | yangyj |
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