Hupe Mike, Li Minerva Xueting, Kneitz Susanne, Davydova Daria, Yokota Chika, Kele Julianna, Hot Belma, Stenman Jan M, Gessler Manfred
Ludwig Institute for Cancer Research Ltd., Box 240, Stockholm SE-171 77, Sweden.
Developmental Biochemistry, Theodor Boveri Institute (Biocenter), University of Wuerzburg, Wuerzburg D-97074, Germany.
Sci Signal. 2017 Jul 11;10(487):eaag2476. doi: 10.1126/scisignal.aag2476.
The blood-brain barrier is a dynamic interface that separates the brain from the circulatory system, and it is formed by highly specialized endothelial cells. To explore the molecular mechanisms defining the unique nature of vascular development and differentiation in the brain, we generated high-resolution gene expression profiles of mouse embryonic brain endothelial cells using translating ribosome affinity purification and single-cell RNA sequencing. We compared the brain vascular translatome with the vascular translatomes of other organs and analyzed the vascular translatomes of the brain at different time points during embryonic development. Because canonical Wnt signaling is implicated in the formation of the blood-brain barrier, we also compared the brain endothelial translatome of wild-type mice with that of mice lacking the transcriptional cofactor β-catenin (). Our analysis revealed extensive molecular changes during the embryonic development of the brain endothelium. We identified genes encoding brain endothelium-specific transcription factors (, , , , , , and ) that are associated with maturation of the blood-brain barrier and act downstream of the Wnt-β-catenin signaling pathway. Profiling of individual brain endothelial cells revealed substantial heterogeneity in the population. Nevertheless, the high abundance of , , , or transcripts correlated with the increased expression of genes encoding markers of brain endothelial cell differentiation. Expression of and in human umbilical vein endothelial cells induced the production of blood-brain barrier differentiation markers. This comprehensive data set may help to improve the engineering of in vitro blood-brain barrier models.
血脑屏障是一个将大脑与循环系统分隔开的动态界面,它由高度特化的内皮细胞形成。为了探究决定大脑中血管发育和分化独特性质的分子机制,我们使用翻译核糖体亲和纯化和单细胞RNA测序技术生成了小鼠胚胎脑内皮细胞的高分辨率基因表达谱。我们将脑血管翻译组与其他器官的血管翻译组进行了比较,并分析了胚胎发育不同时间点的脑血管翻译组。由于经典Wnt信号通路与血脑屏障的形成有关,我们还比较了野生型小鼠与缺乏转录辅因子β-连环蛋白()的小鼠的脑内皮翻译组。我们的分析揭示了脑内皮细胞胚胎发育过程中广泛的分子变化。我们鉴定出了编码脑内皮特异性转录因子(、、、、、和)的基因,这些基因与血脑屏障的成熟相关,并在Wnt-β-连环蛋白信号通路下游发挥作用。对单个脑内皮细胞的分析揭示了该群体中存在大量异质性。然而,、、或转录本的高丰度与编码脑内皮细胞分化标志物的基因表达增加相关。在人脐静脉内皮细胞中表达和可诱导血脑屏障分化标志物的产生。这个全面的数据集可能有助于改进体外血脑屏障模型的构建。