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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Spatially Heterogeneous Choroid Plexus Transcriptomes Encode Positional Identity and Contribute to Regional CSF Production
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Spatially Heterogeneous Choroid Plexus Transcriptomes Encode Positional Identity and Contribute to Regional CSF Production

机译:空间异质脉络膜丛转录om对位置标识进行编码并有助于区域CSF生产

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摘要

A sheet of choroid plexus epithelial cells extends into each cerebral ventricle and secretes signaling factors into the CSF. To evaluate whether differences in the CSF proteome across ventricles arise, in part, from regional differences in choroid plexus gene expression, we defined the transcriptome of lateral ventricle (telencephalic) versus fourth ventricle (hindbrain) choroid plexus. We find that positional identities of mouse, macaque, and human choroid plexi derive from gene expression domains that parallel their axial tissues of origin. We then show that molecular heterogeneity between telencephalic and hindbrain choroid plexi contributes to region-specific, age-dependent protein secretion in vitro. Transcriptome analysis of FACS-purified choroid plexus epithelial cells also predicts their cell-type-specific secretome. Spatial domains with distinct protein expression profiles were observed within each choroid plexus. We propose that regional differences between choroid plexi contribute to dynamic signaling gradients across the mammalian cerebroventricular system.
机译:一片脉络膜丛上皮细胞延伸到每个脑室中并将信号传导因子分泌到CSF中。为了评估跨心室的CSF蛋白质组的差异,部分地部分地从脉络膜丛基因表达的区域差异中,我们定义了侧脑室(视线肺)的转录组与第四心室(后脑)脉络丛。我们发现小鼠,猕猴和人脉络膜的位置标识来自基因表达结构域,该域并平行其原产地的轴向组织。然后,我们表明眼光和后脑脉络膜丛之间的分子异质性有助于在体外有助于地区特异性的年龄依赖性蛋白质分泌。 FACS纯化的脉络膜上皮细胞的转录组分析还预测了其细胞型特异性秘切。在每个脉络膜丛内观察到具有不同蛋白质表达谱的空间域。我们建议脉络丛之间的区域差异有助于哺乳动物脑室系统的动态信号梯度。

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