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Protein O-Glucosyltransferase 1 (POGLUT1) Promotes Mouse Gastrulation through Modification of the Apical Polarity Protein CRUMBS2

机译:蛋白质O-葡糖糖基转移酶1(Poglut1)通过修饰顶端极性蛋白CROMBS2来促进小鼠胃动脉

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Crumbs family proteins are apical transmembrane proteins with ancient roles in cell polarity. Mouse Crumbs2 mutants arrest at midgestation with abnormal neural plate morphology and a deficit of mesoderm caused by defects in gastrulation. We identified an ENU-induced mutation, wsnp, that phenocopies the Crumbs2 null phenotype. We show that wsnp is a null allele of Protein O-glucosyltransferase 1 (Poglut1), which encodes an enzyme previously shown to add O-glucose to EGF repeats in the extracellular domain of Drosophila and mammalian Notch, but the role of POGLUT1 in mammalian gastrulation has not been investigated. As predicted, we find that POGLUT1 is essential for Notch signaling in the early mouse embryo. However, the loss of mouse POGLUT1 causes an earlier and more dramatic phenotype than does the loss of activity of the Notch pathway, indicating that POGLUT1 has additional biologically relevant substrates. Using mass spectrometry, we show that POGLUT1 modifies EGF repeats in the extracellular domain of full-length mouse CRUMBS2. CRUMBS2 that lacks the O-glucose modification fails to be enriched on the apical plasma membrane and instead accumulates in the endoplasmic reticulum. The data demonstrate that CRUMBS2 is the target of POGLUT1 for the gastrulation epithelial-to-mesenchymal transitions (EMT) and that all activity of CRUMBS2 depends on modification by POGLUT1. Mutations in human POGLUT1 cause Dowling-Degos Disease, POGLUT1 is overexpressed in a variety of tumor cells, and mutations in the EGF repeats of human CRUMBS proteins are associated with human congenital nephrosis, retinitis pigmentosa and retinal degeneration, suggesting that O-glucosylation of CRUMBS proteins has broad roles in human health.
机译:面包屑家族蛋白质是具有古代角色在细胞极性的顶端跨膜蛋白。小鼠Crumbs2突变体在中途衰退时,具有异常神经板形态和脱脂缺陷引起的中胚层的缺陷。我们鉴定了一种enu诱导的突变,WSNP,衰弱的衰弱鼠标型冠状细胞表型。我们表明WSNP是蛋白质O-葡糖基转移酶1(Poglut1)的零等位基因,其编码前面显示的酶,以在果蝇和哺乳动物缺口的细胞外结构域中添加O-葡萄糖,而是在哺乳动物乳房的作用中的作用尚未调查。如预测,我们发现Poglut1对于早期鼠标胚胎中的缺口信号传导至关重要。然而,小鼠Poglut1的丧失引起较前且更显着的表型,而不是陷波途径的活性丧失,表明Poglut1具有额外的生物学相关的基材。使用质谱法,我们表明Poglut1在全长小鼠BrumBs2的细胞外结构域中修饰EGF重复。缺乏O-葡萄糖修饰的脆皮BROMBS2不能富集在顶端血浆膜上,而是在内质网中累积。数据表明,CROMBS2是用于胶凝型上皮对间充质转换(EMT)的PoGlut1的靶标,并且所有面包屑2的活性都取决于Poglut1的改性。人体Poglut1中的突变引起Dowling-Degos疾病,Poglut1在各种肿瘤细胞中过表达,EGF的人类面包蛋白蛋白的突变与人类先天性肾病,视网膜炎和视网膜变性有关,表明o-葡萄糖苷化的面包屑蛋白质在人类健康方面具有广泛的作用。

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