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Genetic Control of Fusion Pore Expansion in the Epidermis of Caenorhabditis elegans

机译:秀丽隐杆线虫表皮融合孔扩展的遗传控制

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Developmental cell fusion is found in germlines, muscles, bones, placentae, and stem cells. In Caenorhabditis elegans 300 somatic cells fuse during development. Although there is extensive information on the early intermediates of viral-induced and intracellular membrane fusion, little is known about late stages in membrane fusion. To dissect the pathway of cell fusion in C. elegans embryos, we use genetic and kinetic analyses using live-confocal and electron microscopy. We simultaneously monitor the rates of multiple cell fusions in developing embryos and find kinetically distinct stages of initiation and completion of membrane fusion in the epidermis. The stages of cell fusion are differentially blocked or retarded in eff-1 and idf-1 mutants. We generate kinetic cell fusion maps for embryos grown at different temperatures. Different sides of the same cell differ in their fusogenicity: the left and right membrane domains are fusion-incompetent, whereas the anterior and posterior membrane domains fuse with autonomous kinetics in embryos. All but one cell pair can initiate the formation of the largest syncytium. The first cell fusion does not trigger a wave of orderly fusions in either direction. Ultrastructural studies show that epidermal syncytiogenesis require eff-1 activities to initiate and expand membrane merger.
机译:在种系,肌肉,骨骼,胎盘和干细胞中发现发育性细胞融合。在秀丽隐杆线虫中,300个体细胞在发育过程中融合。尽管关于病毒诱导和细胞内膜融合的早期中间体有广泛的信息,但对膜融合的后期知之甚少。为了剖析秀丽隐杆线虫胚胎中的细胞融合途径,我们使用活体镜和电子显微镜对基因和动力学进行了分析。我们同时监测发育中的胚胎中多种细胞融合的速率,并发现表皮中膜融合的启动和完成的动力学不同阶段。细胞融合的阶段在eff-1和idf-1突变体中被差异性阻断或阻滞。我们为在不同温度下生长的胚胎生成动力学细胞融合图。同一细胞的不同侧面融合性不同:左和右膜结构域无融合能力,而前和后膜结构域与胚胎的自主动力学融合。除一对细胞外,其他所有细胞均可引发最大合胞体的形成。第一次细胞融合不会在两个方向上触发有序融合的浪潮。超微结构研究表明,表皮合胞体发生需要eff-1活性来启动和扩大膜合并。

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