首页> 美国卫生研究院文献>The Journal of Biological Chemistry >O-Fucose Monosaccharide of Drosophila Notch Has a Temperature-sensitive Function and Cooperates with O-Glucose Glycan in Notch Transport and Notch Signaling Activation
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O-Fucose Monosaccharide of Drosophila Notch Has a Temperature-sensitive Function and Cooperates with O-Glucose Glycan in Notch Transport and Notch Signaling Activation

机译:果蝇缺口的O-岩藻糖单糖具有温度敏感性功能并与O-葡萄糖聚糖在缺口运输和缺口信号激活中协同作用

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摘要

Notch (N) is a transmembrane receptor that mediates the cell-cell interactions necessary for many cell fate decisions. N has many epidermal growth factor-like repeats that are O-fucosylated by the protein O-fucosyltransferase 1 (O-Fut1), and the O-fut1 gene is essential for N signaling. However, the role of the monosaccharide O-fucose on N is unclear, because O-Fut1 also appears to have O-fucosyltransferase activity-independent functions, including as an N-specific chaperon. Such an enzymatic activity-independent function could account for the essential role of O-fut1 in N signaling. To evaluate the role of the monosaccharide O-fucose modification in N signaling, here we generated a knock-in mutant of O-fut1 (O-fut1R245A knock-in), which expresses a mutant protein that lacks O-fucosyltransferase activity but maintains the N-specific chaperon activity. Using O-fut1R245A knock-in and other gene mutations that abolish the O-fucosylation of N, we found that the monosaccharide O-fucose modification of N has a temperature-sensitive function that is essential for N signaling. The O-fucose monosaccharide and O-glucose glycan modification, catalyzed by Rumi, function redundantly in the activation of N signaling. We also showed that the redundant function of these two modifications is responsible for the presence of N at the cell surface. Our findings elucidate how different forms of glycosylation on a protein can influence the protein's functions.
机译:Notch(N)是一种跨膜受体,介导许多细胞命运决定所必需的细胞-细胞相互作用。 N具有许多被蛋白O-岩藻糖基转移酶1(O-Fut1)进行O-岩藻糖基化的表皮生长因子样重复序列,而O-fut1基因对于N信号传导至关重要。但是,单糖O-岩藻糖在N上的作用尚不清楚,因为O-Fut1似乎也具有不依赖于O-岩藻糖基转移酶活性的功能,包括作为N-特异性伴侣蛋白。这种与酶活性无关的功能可以解释O-fut1在N信号传导中的重要作用。为了评估单糖O-岩藻糖修饰在N信号中的作用,我们在这里生成了O-fut1的敲入突变体(O-fut1 R245A敲入),该突变体表达了一种缺乏O-岩藻糖基转移酶活性,但保持N-特异性伴侣蛋白活性。使用O-fut1 R245A敲入和其他消除N的O-岩藻糖基化的基因突变,我们发现N的单糖O-岩藻糖修饰具有对N必不可少的温度敏感功能信号。 Rumi催化的O-岩藻糖单糖和 O -葡萄糖聚糖修饰在激活N信号中起冗余作用。我们还表明,这两个修饰的冗余功能是造成细胞表面N的存在的原因。我们的发现阐明了蛋白质上不同形式的糖基化如何影响蛋白质的功能。

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