生物
神经节隆起
祖细胞
人口
神经上皮细胞
神经发生
染色质
干细胞
转录组
神经科学
细胞结构
细胞生物学
祖细胞
诱导多能干细胞
细胞分化
胚胎干细胞
皮质激素生成
神经干细胞
嗅球
谱系(遗传)
命运图
核仁
成体干细胞
调节器
解剖
SOX2
基因表达谱
有丝分裂
作者
Clara V. Siebert,Mengyi Song,Juan Moriano,Zhengmeiyu Li,Arantxa Cebrián Silla,Miranda Walker,Songcang Chen,Jennifer Baltazar,Lílian Gomes de Oliveira,Malini Shankar,Yuhan Xie,Pranav Varma Suraparaju,Shaohui Wang,Qiuli Bi,Yajun Xie,Yuqi Ren,Miguel Turrero Garcίa,Li Wang,Guolong Zuo,Marten P. Smidt
标识
DOI:10.64898/2025.12.31.697063
摘要
Abstract The embryonic medial and lateral ganglionic eminences (MGE, LGE) are the principal sources of most neurons and glia for the basal ganglia. In primates, the MGE has a distinctive cytoarchitecture characterized by doublecortin enriched cellular nests (DENs), yet the architectonic organization underlying DEN formation, the molecular heterogeneity of ganglionic eminence progenitors and their lineage relationships, remain poorly understood. Here, using paired single-nucleus transcriptomics and chromatin accessibility profiling of the three GEs, we identify distinct progenitor populations, delineate their gene regulatory networks, and reconstruct their lineage trajectories. Live imaging reveals a unipolar outer radial glia-like population (GE-oRG) that undergoes mitotic somal translocation. Spatial transcriptomics identifies a distinct CRABP1+/ANGPT2+ domain within the MGE. Integrated spatial and electron microscopy demonstrates a periphery-to-center gradient of differentiation in the MGE. Leveraging DEN-forming MGE organoids derived from PCDH19 knockout human pluripotent stem cell lines, we identify the protocadherin, PCDH19, as a key regulator of DEN formation.
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