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Hierarchical assembly of the eggshell and permeability barrier inC. elegans

机译:蛋壳和渗透屏障的分层组装。秀丽隐杆线虫

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摘要

In metazoans, fertilization triggers the assembly of an extracellular coat that constitutes the interface between the embryo and its environment. In nematodes, this coat is the eggshell, which provides mechanical rigidity, prevents polyspermy, and is impermeable to small molecules. Using immunoelectron microscopy, we found that the Caenorhabditis elegans eggshell was composed of an outer vitelline layer, a middle chitin layer, and an inner layer containing chondroitin proteoglycans. The switch between the chitin and proteoglycan layers was achieved by internalization of chitin synthase coincident with exocytosis of proteoglycan-containing cortical granules. Inner layer assembly did not make the zygote impermeable as previously proposed. Instead, correlative light and electron microscopy demonstrated that the permeability barrier was a distinct envelope that formed in a separate step that required fatty acid synthesis, the sugar-modifying enzyme PERM-1, and the acyl chain transfer enzyme DGTR-1. These findings delineate the hierarchy of eggshell assembly and define key molecular mechanisms at each step.
机译:在后生动物中,受精会触发细胞外被膜的组装,该细胞外被膜构成了胚胎与其环境之间的界面。在线虫中,这种外壳是蛋壳,可提供机械刚度,防止多精子,并且不渗透小分子。使用免疫电子显微镜,我们发现秀丽隐杆线虫卵壳由卵黄质外层,中间甲壳质层和内层包含软骨素蛋白聚糖组成。几丁质层和蛋白聚糖层之间的转换是通过几丁质合酶的内在化与含蛋白多糖的皮质颗粒的胞吐作用同时实现的。内层组装没有使合子不可渗透,如先前所提议的。取而代之的是,相关的光镜和电子显微镜证明,通透性屏障是在需要脂肪酸合成,糖修饰酶PERM-1和酰基链转移酶DGTR-1的单独步骤中形成的独特包膜。这些发现描绘了蛋壳装配的层次,并在每个步骤中定义了关键的分子机制。

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