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小鼠颅神经板中空间和时间基因表达的单细胞图谱。

A single-cell atlas of spatial and temporal gene expression in the mouse cranial neural plate.

作者信息

Brooks Eric R, Moorman Andrew R, Bhattacharya Bhaswati, Prudhomme Ian S, Land Max, Alcorn Heather L, Sharma Roshan, Pe'er Dana, Zallen Jennifer A

机构信息

HHMI and Developmental Biology Program, Sloan Kettering Institute.

Department of Molecular Biomedical Sciences, College of Veterinary Medicine, North Carolina State University.

出版信息

bioRxiv. 2025 Mar 6:2024.08.25.609458. doi: 10.1101/2024.08.25.609458.

Abstract

The formation of the mammalian brain requires regionalization and morphogenesis of the cranial neural plate, which transforms from an epithelial sheet into a closed tube that provides the structural foundation for neural patterning and circuit formation. Sonic hedgehog (SHH) signaling is important for cranial neural plate patterning and closure, but the transcriptional changes that give rise to the spatially regulated cell fates and behaviors that build the cranial neural tube have not been systematically analyzed. Here we used single-cell RNA sequencing to generate an atlas of gene expression at six consecutive stages of cranial neural tube closure in the mouse embryo. Ordering transcriptional profiles relative to the major axes of gene expression predicted spatially regulated expression of 870 genes along the anterior-posterior and mediolateral axes of the cranial neural plate and reproduced known expression patterns with over 85% accuracy. Single-cell RNA sequencing of embryos with activated SHH signaling revealed distinct SHH-regulated transcriptional programs in the developing forebrain, midbrain, and hindbrain, suggesting a complex interplay between anterior-posterior and mediolateral patterning systems. These results define a spatiotemporally resolved map of gene expression during cranial neural tube closure and provide a resource for investigating the transcriptional events that drive early mammalian brain development.

摘要

哺乳动物大脑的形成需要颅神经板的区域化和形态发生,颅神经板从上皮层转变为封闭的神经管,为神经模式形成和神经回路形成提供结构基础。音猬因子(SHH)信号对于颅神经板的模式形成和闭合很重要,但尚未系统分析导致构建颅神经管的空间调控细胞命运和行为的转录变化。在这里,我们使用单细胞RNA测序生成了小鼠胚胎颅神经管闭合连续六个阶段的基因表达图谱。相对于基因表达的主轴对转录谱进行排序,预测了870个基因在颅神经板前后轴和内外侧轴上的空间调控表达,并以超过85%的准确率重现了已知的表达模式。对SHH信号激活的胚胎进行单细胞RNA测序,揭示了发育中的前脑、中脑和后脑不同的SHH调控转录程序,表明前后模式系统和内外侧模式系统之间存在复杂的相互作用。这些结果定义了颅神经管闭合过程中基因表达的时空解析图谱,并为研究驱动早期哺乳动物大脑发育的转录事件提供了资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1a6/11956620/2c032990f4fb/nihpp-2024.08.25.609458v3-f0001.jpg

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