Spatial proteomics reveals prefrontal circuit diversity in socioemotional behaviour
Ito, Y.; Nagamoto, S.; Uchiyama, S.; Onishi, K.; Matsubayashi, J.; Fukuda, A.; Funakoshi, M.; Hattori, S.; Takeuchi, K.; Kudo, M.; Masuda, T.; Hiraoka, Y.; Kohro, Y.; Shimogori, T.; Tsuda, M.; Kosako, H.; Takano, T.
Show abstract
Understanding how molecular diversity across long-range neural circuits governs brain function remains a central challenge in neuroscience. Here, we developed a projection-specific spatial proteomics approach and revealed robust presynaptic molecular divergence across six projection-defined pathways of the medial prefrontal cortex (mPFC), including efferent projections to the basolateral amygdala (BLA), nucleus accumbens (NAc), thalamus (Thal), hypothalamus (HT) and cortex (CTX), as well as the afferent projection from the BLA to the mPFC. Among these pathways, we identify BLTP2 (KIAA0100), a previously uncharacterized transmembrane protein, as highly enriched in the projection from the mPFC to the BLA. BLTP2 localizes to excitatory presynaptic terminals and is enriched at synapses that are activated during memory formation. Loss of BLTP2 impairs synaptic structure and transmission, and reduces activity-dependent remodelling, resulting in selective deficits in contextual fear memory, anxiety-related behavior, and social behavior. Mechanistically, BLTP2 promotes presynaptic assembly by recruiting Neurexin 1. These findings reveal projection-specific presynaptic molecular diversity and provide mechanistic insights into circuit-level vulnerabilities in neuropsychiatric disorders.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- A neuron type-specific microexon in Ank3/ankyrin-G modulates calcium activity and neuronal excitability 98%
- Spatiotemporal proteomics reveals the biosynthetic lysosomal membrane protein interactome in neurons 98%
- Phosphorylation triggers presynaptic phase separation of Liprin-α3 to control active zone structure 98%
Similar papers in this journal
- Intersectin and Endophilin condensates prime synaptic vesicles for release site replenishment 98%
- Unexpected contributions of striatal projection neurons coexpressing dopamine D1 and D2 receptors in balancing motor control 98%
- Genetic mapping identifies Homer1 as a developmental modifier of attention 98%
Similar papers in this journal
- Potentiation of active locomotor state by spinal-projecting serotonergic neurons 98%
- Embryonically Active Piriform Cortex Neurons Promote Intracortical Recurrent Connectivity during Development 97%
- A cortical circuit mechanism for coding and updating task structural knowledge in inference-based decision-making 97%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.