首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Dual Roles of O-Glucose Glycans Redundant with Monosaccharide O-Fucose on Notch in Notch Trafficking
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Dual Roles of O-Glucose Glycans Redundant with Monosaccharide O-Fucose on Notch in Notch Trafficking

机译:单糖O-岩藻糖与O型葡萄糖冗余对Notch贩运中Notch的双重作用

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摘要

Notch is a transmembrane receptor that mediates cell-cell interactions and controls various cell-fate specifications in metazoans. The extracellular domain of Notch contains multiple epidermal growth factor (EGF)-like repeats. At least five different glycans are found in distinct sites within these EGF-like repeats. The function of these individual glycans in Notch signaling has been investigated, primarily by disrupting their individual glycosyltransferases. However, we are just beginning to understand the potential functional interactions between these glycans. Monosaccharide O-fucose and O-glucose trisaccharide (O-glucose-xylose-xylose) are added to many of the Notch EGF-like repeats. In Drosophila, Shams adds a xylose specifically to the monosaccharide O-glucose. We found that loss of the terminal dixylose of O-glucose-linked saccharides had little effect on Notch signaling. However, our analyses of double mutants of shams and other genes required for glycan modifications revealed that both the monosaccharide O-glucose and the terminal dixylose of O-glucose-linked saccharides function redundantly with the monosaccharide O-fucose in Notch activation and trafficking. The terminal dixylose of O-glucose-linked saccharides and the monosaccharide O-glucose were required in distinct Notch trafficking processes: Notch transport from the apical plasma membrane to adherens junctions, and Notch export from the endoplasmic reticulum, respectively. Therefore, the monosaccharide O-glucose and terminal dixylose of O-glucose-linked saccharides have distinct activities in Notch trafficking, although a loss of these activities is compensated for by the presence of monosaccharide O-fucose. Given that various glycans attached to a protein motif may have redundant functions, our results suggest that these potential redundancies may lead to a serious underestimation of glycan functions.
机译:Notch是一种跨膜受体,介导细胞与细胞之间的相互作用并控制后生动物的各种细胞命运。 Notch的胞外域包含多个表皮生长因子(EGF)样重复序列。在这些类似EGF的重复序列的不同位点中发现了至少五个不同的聚糖。已经研究了这些单个聚糖在Notch信号传导中的功能,主要是通过破坏它们的单个糖基转移酶。但是,我们才刚刚开始理解这些聚糖之间潜在的功能相互作用。单糖O-岩藻糖和O-葡萄糖三糖(O-葡萄糖-木糖-木糖)被添加到许多类似Notch EGF的重复序列中。在果蝇中,Shams专门向单糖O-葡萄糖添加木糖。我们发现,O-葡萄糖连接的糖类末端二糖的丢失对Notch信号的影响很小。但是,我们对聚糖修饰所需的茎和其他基因的双突变体的分析表明,单糖O-葡萄糖和O-葡萄糖连接的糖的末端二木糖在Notch激活和运输中均与单糖O-岩藻糖冗余地起作用。在不同的Notch转运过程中需要O-葡萄糖连接的糖的末端二糖和单糖O-葡萄糖:Notch从顶质膜转运到粘附连接,以及Notch从内质网输出。因此,尽管通过单糖O-岩藻糖的存在补偿了这些活性的损失,但是O-葡萄糖连接的糖的单糖O-葡萄糖和末端二木糖在Notch运输中具有不同的活性。考虑到附着在蛋白质基序上的各种聚糖可能具有多余的功能,我们的结果表明,这些潜在的冗余可能导致对聚糖功能的严重低估。

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