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小脑的人类特异性特征与ZP2调节的突触发育

Human-specific features of the cerebellum and ZP2-regulated synapse development.

作者信息

Kim Suel-Kee, Cherskov Adriana, Sindhwani Aastha, Choi Sang-Hun, Kim Hyojin, Li Ming-Li, Zhang Menglei, Mato-Blanco Xoel, Liu Yuting, Micali Nicola, Young David M, Estacion Mark, Zhang Yueqi, Ruiz-Jimenez Jose Manuel, Nadkarni Anandita, Luria Victor, Sindhu Suvimal Kumar, Chatterjee Ipsita, Shibata Akemi, Liang Dan, Cho Hyesun, Park Saejeong, Spajic Ana, Kovner Rothem, Glavan Martina, Chen Rachel J, Risgaard Ryan D, Li Xinyun, Pochareddy Sirisha, Karger Amir, Huttner Anita, Morozov Yury M, Daadi Etienne W, Colantuoni Carlo, Gobeske Kevin T, Ely John J, Hof Patrick R, Daadi Marcel M, Sherwood Chet C, Duque Alvaro, Ma Shaojie, Sousa Andre M M, Waxman Stephen, Rakic Pasko, Santpere Gabriel, Sanders Stephan J, Sestan Nenad

出版信息

bioRxiv. 2025 Sep 9:2025.09.08.674970. doi: 10.1101/2025.09.08.674970.

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.

摘要

长期以来,了解人类大脑与非人类灵长类动物相比的独特特征一直吸引着人类。小脑优化运动协调和认知功能,促进了人类适应性和灵活性的进化发展。为了确定灵长类动物之间的共同特征和差异特征,我们对人类、黑猩猩、猕猴和狨猴的成年小脑皮质进行了单核转录组学和染色质可及性分析。我们揭示了人类特有的转录组学和调控特征,特别是那些参与突触形成的特征。值得注意的是,我们在人类颗粒细胞中发现了精子受体透明带糖蛋白2(ZP2)及其潜在相互作用分子的富集,它们以在配子相互作用中的作用而闻名。实验数据表明,脑桥苔藓纤维可诱导人类颗粒细胞中ZP2的表达,减少脑桥小脑小球突触处的突触蛋白,并降低小脑神经元的电生理活动。ZP2在人类特异性突触调节中的这种意外的新功能为人类小脑的进化特化提供了见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21b9/12439918/71a2cbe6e089/nihpp-2025.09.08.674970v1-f0001.jpg

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