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EphrinB2 affects apical constriction in Xenopus embryos and is regulated by ADAM10 and flotillin-1

机译:EphrinB2影响非洲爪蟾胚胎的顶端收缩,并受ADAM10和flotillin-1调控

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摘要

The Eph/ephrin signalling pathways have a critical function in cell adhesion and repulsion, and thus play key roles in various morphogenetic events during development. Here we show that a decrease in ephrinB2 protein causes neural tube closure defects during Xenopus laevis embryogenesis. Such a decrease in ephrinB2 protein levels is observed on the loss of flotillin-1 scaffold protein, a newly identified ephrinB2-binding partner. This dramatic decline in ephrinB2 protein levels on the absence of flotillin-1 expression is specific, and is partly the result of an increased susceptibility to cleavage by the metalloprotease ADAM10. These findings indicate that flotillin-1 regulates ephrinB2 protein levels through ADAM10, and is required for appropriate neural tube morphogenesis in the Xenopus embryo.
机译:Eph / ephrin信号通路在细胞粘附和排斥中起关键作用,因此在发育过程中的各种形态发生事件中起关键作用。在这里我们表明,ephrinB2蛋白的减少会导致非洲爪蟾胚胎发生过程中神经管闭合缺陷。在弗洛蒂林1支架蛋白(一种新鉴定的ephrinB2结合伴侣)丢失的情况下,观察到ephrinB2蛋白水平的这种下降。缺乏flotillin-1表达时,ephrinB2蛋白水平的这种急剧下降是特异性的,部分原因是金属蛋白酶ADAM10对切割的敏感性增加。这些发现表明,弗洛蒂林1通过ADAM10调节ephrinB2蛋白水平,是非洲爪蟾胚胎中适当的神经管形态发生所必需的。

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