Human-specific features of the cerebellum and ZP2-regulated synapse development
Kim, S.-K.; Cherskov, A.; Sindhwani, A.; Choi, S.-H.; Kim, H.; Li, M.-L.; Zhang, M.; Mato-Blanco, X.; Liu, Y.; Micali, N.; Young, D. M.; Estacion, M.; Zhang, Y.; Ruiz-Jimenez, J. M.; Nadkarni, A.; Luria, V.; Sindhu, S. K.; Chatterjee, I.; Shibata, A.; Liang, D.; Cho, H.; Park, S.; Spajic, A.; Kovner, R.; Glavan, M.; Chen, R. J.; Risgaard, R. D.; Li, X.; Pochareddy, S.; Karger, A.; Huttner, A.; Morozov, Y. M.; Daadi, E. W.; Colantuoni, C.; Gobeske, K. T.; Ely, J. J.; Hof, P. R.; Daadi, M. M.; Sherwood, C. C.; Duque, A.; Ma, S.; Sousa, A. M. M.; Waxman, S.; Rakic, P.; Santpere, G.; Sanders, S. J
Show abstract
Understanding the unique features of the human brain compared to non-human primates has long intrigued humankind. The cerebellum refines motor coordination and cognitive functions, contributing to the evolutionary development of human adaptability and dexterity. To identify shared and divergent features across primates, we conducted single-nucleus transcriptomic and chromatin accessibility profiling of the adult cerebellar cortex in humans, chimpanzees, macaques, and marmosets. We revealed human-specific transcriptomic and regulatory features, particularly those involved in synaptogenesis. Notably, we identified an enrichment of the sperm receptor zona pellucida glycoprotein 2 (ZP2) and its potential interactors, known for their roles in gamete interaction, in human granule cells. Experimental data show that ZP2 expression in human granule cells is induced by pontine mossy fibers, reducing synaptic proteins at pontocerebellar glomerular synapses, and decreasing cerebellar neuron electrophysiological activity. This unexpected co-option of ZP2 in human-specific synapse regulation provides insights into the evolutionary specialization of the human cerebellum.
Matching journals
The top 5 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cell-type, single-cell, and spatial signatures of brain-region specific splicing in postnatal development 97%
- TAD Evolutionary and functional characterization reveals diversity in mammalian TAD boundary properties and function 97%
- ZMYND11 Functions in Bimodal Regulation of Latent Genes and Brain-like Splicing to Safeguard Corticogenesis 97%
Similar papers in this journal
- A Meta-Atlas of the Developing Human Cortex Identifies Modules Driving Cell Subtype Specification 97%
- FOXP Genes Regulate Purkinje Cell Diversity in Cerebellar Development and Evolution 97%
- Comparative molecular landscapes of immature neurons in the mammalian dentate gyrus across species reveal special features in humans 97%
Similar papers in this journal
Similar papers in this journal
- Integrated single-cell transcriptomic and epigenetic analyses of cell-state transition and lineage commitment in the embryonic mouse cerebellum 98%
- Single-cell genomics reveals region-specific developmental trajectories underlying neuronal diversity in the human hypothalamus 97%
- L1 retrotransposons drive human neuronal transcriptome complexity and functional diversification 96%
Similar papers in this journal
"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.