生物
突触发生
细胞生物学
发育生物学
神经科学
细胞分化
转录因子
祖细胞
基因
干细胞
遗传学
作者
Natalí B. Rasetto,Damiana Giacomini,Ariel A. Berardino,Tomás Vega Waichman,Maximiliano S. Beckel,Daniela J. Di Bella,Juliana Brown,M. Georgina Davies-Sala,Chiara Gerhardinger,D. Chichung Lie,Paola Arlotta,Ariel Chernomoretz,Alejandro F. Schinder
出处
期刊:Science Advances
[American Association for the Advancement of Science (AAAS)]
日期:2024-07-19
卷期号:10 (29)
被引量:1
标识
DOI:10.1126/sciadv.adp6039
摘要
The adult hippocampus generates new granule cells (aGCs) with functional capabilities that convey unique forms of plasticity to the preexisting circuits. While early differentiation of adult radial glia-like cells (RGLs) has been studied extensively, the molecular mechanisms guiding the maturation of postmitotic neurons remain unknown. Here, we used a precise birthdating strategy to study aGC differentiation using single-nuclei RNA sequencing. Transcriptional profiling revealed a continuous trajectory from RGLs to mature aGCs, with multiple immature stages bearing increasing levels of effector genes supporting growth, excitability, and synaptogenesis. Analysis of differential gene expression, pseudo-time trajectory, and transcription factors (TFs) revealed critical transitions defining four cellular states: quiescent RGLs, proliferative progenitors, immature aGCs, and mature aGCs. Becoming mature aGCs involved a transcriptional switch that shuts down pathways promoting cell growth, such SoxC TFs, to activate programs that likely control neuronal homeostasis. aGCs overexpressing Sox4 or Sox11 remained immature. Our results unveil precise molecular mechanisms driving adult RGLs through the pathway of neuronal differentiation.
科研通智能强力驱动
Strongly Powered by AbleSci AI