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2-O-sulfotransferase regulates Wnt signaling, cell adhesion and cell cycle during zebrafish epiboly

机译:2-O-磺基转移酶调节斑马鱼表皮期的Wnt信号,细胞粘附和细胞周期

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O-sulfotransferases modify heparan sulfate proteoglycans (HSPGs) by catalyzing the transfer of a sulfate to a specific position on heparan sulfate glycosaminoglycan (GAG) chains. Although the roles of specific HSPG modifications have been described in cell culture and invertebrates, little is known about their functions or abilities to modulate specific cell signaling pathways in vertebrate development. Here, we report that 2-O-sulfotransferase (2-OST) is an essential component of canonical Wnt signaling in zebrafish development. 2-OST-defecient embryos have reduced GAG chain sulfation and are refractory to exogenous Wnt8 overexpression. Embryos in which maternally encoded 2-OST is knocked down have normal activation of several zygotic mesoderm, endoderm and ectoderm patterning genes, but have decreased deep cell adhesion and fail to initiate epiboly, which can be rescued by re-expression of 2-OST protein. Reduced cell adhesion and altered cell cycle regulation in 2-OST-deficient embryos are associated with decreased β-catenin and E-cadherin protein levels at cell junctions, and these defects can be rescued by reactivation of the intracellular Wnt pathway, utilizing stabilized β-catenin or dominant-negative Gsk3, but not by overexpression of Wnt8 ligand. Together, these results indicate that 2-OST functions within the Wnt pathway, downstream of Wnt ligand signaling and upstream of Gsk3p and p-catenin intracellular localization and function.
机译:O-磺基转移酶通过催化硫酸盐转移到硫酸乙酰肝素糖胺聚糖(GAG)链上的特定位置来修饰硫酸乙酰肝素蛋白聚糖(HSPG)。尽管已经在细胞培养和无脊椎动物中描述了特定HSPG修饰的作用,但对于它们在脊椎动物发育中调节特定细胞信号通路的功能或能力知之甚少。在这里,我们报告2-O-磺基转移酶(2-OST)是斑马鱼发展中规范Wnt信号的重要组成部分。缺乏2-OST的胚胎减少了GAG链的硫酸化作用,并且对外源性Wnt8过表达难治。敲除由母体编码的2-OST的胚胎具有几个合子中胚层,内胚层和外胚层模式基因的正常激活,但深层细胞黏附力降低且不能外生,可通过重新表达2-OST蛋白来挽救。 2-OST缺陷型胚胎中细胞黏附力的降低和细胞周期调控的改变与细胞连接处β-catenin和E-cadherin蛋白水平的降低有关,这些缺陷可以通过利用稳定的β-蛋白重新激活细胞内Wnt途径来挽救。连环蛋白或显性阴性Gsk3,但不是通过Wnt8配体的过表达来实现。总之,这些结果表明2-OST在Wnt途径内,Wnt配体信号传导的下游以及Gsk3p和p-catenin细胞内定位和功能的上游起作用。

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