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Spatial Reconstruction of Single Enterocytes Uncovers Broad Zonation along the Intestinal Villus Axis

机译:单肠细胞的空间重建沿着肠壁轴揭开了广泛的区分区

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摘要

The intestinal epithelium is a highly structured tissue composed of repeating crypt-villus units. Enterocytes perform the diverse tasks of absorbing a wide range of nutrients while protecting the body from the harsh bacterium-rich environment. It is unknown whether these tasks are spatially zonated along the villus axis. Here, we extracted a large panel of landmark genes characterized by transcriptomics of laser capture microdissected villus segments and utilized it for single-cell spatial reconstruction, uncovering broad zonation of enterocyte function along the villus. We found that enterocytes at villus bottoms express an anti-bacterial gene program in a microbiome-dependent manner. They next shift to sequential expression of carbohydrates, peptides, and fat absorption machineries in distinct villus compartments. Finally, they induce a Cd73 immune-modulatory program at the villus tips. Our approach can be used to uncover zonation patterns in other organs when prior knowledge of landmark genes is lacking.
机译:肠上皮是一种高度结构化的组织,由重复绒毛绒毛单位组成。肠细胞在保护身体免受富裕的细菌的环境中进行各种营养素进行多种任务。尚不清楚这些任务是沿着绒毛轴的空间划分。在这里,我们提取了一种大型面板,其特征在于激光捕获微小绒毛段的转录组织,并利用它用于单细胞空间重建,揭示沿着绒毛的肠细胞功能的广泛区分。我们发现绒毛底部的肠溶细胞以微生物组依赖性方式表达抗菌基因程序。他们在不同绒毛室中的碳水化合物,肽和脂肪吸收机器的顺序表达到顺序表达。最后,他们在绒毛尖端诱导CD73免疫调制方案。当缺乏地标基因的先前知识时,我们的方法可用于在其他器官缺少时遍布其他器官中的分区模式。

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