生物
小脑
神经科学
小脑皮质
突触
转录组
人脑
颗粒细胞
小脑深核
配子
神经元
突触发生
神经突
电生理学
电池类型
细胞生物学
作者
Suel-Kee Kim,Adriana Cherskov,Aastha Sindhwani,Sang-Hun Choi,Hyojin Kim,Mingli Li,Menglei Zhang,Xoel Mato-Blanco,Ying Liu,Nicola Micali,David M. Young,Mark Estación,Yueqi Zhang,Jose Manuel Ruiz-Jiménez,Anandita Nadkarni,Victor Luria,Suvimal Kumar Sindhu,Ipsita Chatterjee,Akemi Shibata,S. Li
出处
期刊:Cell
[Cell Press]
日期:2026-03-01
卷期号:189 (6): 1802-1819.e28
标识
DOI:10.1016/j.cell.2026.02.014
摘要
Understanding the unique features of the human brain compared with 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 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 (GCs). Experimental data show that ZP2 expression in human GCs is induced by pontine mossy fibers, reducing synaptic proteins at the 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.
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