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Tubulogenesis in a simple cell cord requires the formation of bi-apical cells through two discrete Par domains

机译:简单细胞线中的成管作用需要通过两个离散的Par结构域形成双尖细胞

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摘要

Apico-basal polarization is a crucial step in the de novo formation of biological tubes. In Ciona notochord, tubulogenesis occurs in a single file of cells in the absence of cell proliferation. This configuration presents a unique challenge for the formation of a continuous lumen. Here, we show that this geometric configuration is associated with a novel polarization strategy: the generation of bipolar epithelial cells possessing two apical/luminal domains instead of one, as in the conventional epithelium. At the molecular level, cells establish two discrete Par3/Par6/aPKC patches, and form two sets of tight junctions, in opposite points of the cells. The key molecule controlling the formation of both domains is Par3. Changing the position of the cells within the organ fundamentally changes their polarity and the number of apical domains they develop. These results reveal a new mechanism for tubulogenesis from the simplest cell arrangement, which occurs in other developmental contexts, including vertebrate vascular anastomosis.
机译:顶基极化是生物管从头形成的关键步骤。在Ciona notochord中,在没有细胞增殖的情况下,单个细胞中发生了肾小管生成。这种构造对连续内腔的形成提出了独特的挑战。在这里,我们证明了这种几何构型与一种新颖的极化策略有关:双极上皮细胞的生成具有两个顶/管腔域而不是一个,就像传统上皮一样。在分子水平上,细胞在细胞的相对点建立两个离散的Par3 / Par6 / aPKC斑块,并形成两组紧密连接。控制两个结构域形成的关键分子是Par3。改变器官内细胞的位置从根本上改变了它们的极性和它们形成的根尖区域的数量。这些结果揭示了由最简单的细胞排列引起的肾小管生成的新机制,这种机制发生在包括脊椎动物血管吻合在内的其他发育环境中。

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