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首页> 外文期刊>Carbohydrate research >Core fucose and bisecting GlcNAc, the direct modifiers of the N-glycan core: their functions and target proteins
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Core fucose and bisecting GlcNAc, the direct modifiers of the N-glycan core: their functions and target proteins

机译:核心岩藻糖和二等分GlcNAc,N-聚糖核心的直接修饰物:其功能和靶蛋白

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摘要

Among the various posttranslational modification reactions, glycosylation is the most common, and nearly 50% of all known proteins are thought to be glycosylated. In particular, most of the molecules involved in cell-cell communication are glycosylated, and glycosylation is thus implicated in many physiological and pathological events, including cell growth, cell-cell adhesion, and tumor metastasis. As many of the glycosyltransferases are cloned, it is becoming possible to alter the oligosaccharide structures artificially and examine the effects. Among the glycosyltransferases involved in the biosynthesis of N-glycan branching, this review will focus on the function of Fut8 and N-acetylglucosaminyltransferase III, which directly modify the N-glycan core. It is suggested that these two glycosyltransferases are involved in the conformation and the function of the modified proteins including cell-surface receptors and adhesion molecules.
机译:在各种翻译后修饰反应中,糖基化是最常见的,所有已知蛋白质中近50%被认为是糖基化的。特别地,参与细胞-细胞通讯的大多数分子被糖基化,因此糖基化牵涉许多生理和病理学事件,包括细胞生长,细胞间粘附和肿瘤转移。由于克隆了许多糖基转移酶,因此有可能人为地改变寡糖结构并检查其效果。在涉及N-聚糖分支生物合成的糖基转移酶中,本文将重点研究直接修饰N-聚糖核心的Fut8和N-乙酰氨基葡萄糖氨基转移酶III的功能。提示这两个糖基转移酶参与了包括细胞表面受体和粘附分子在内的修饰蛋白的构象和功能。

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