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Biological significance of complex N-glycans in plants and their impact on plant physiology

机译:复合N-聚糖在植物中的生物学意义及其对植物生理的影响

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摘要

Asparagine (N)-linked protein glycosylation is a ubiquitous co- and post-translational modification which can alter the biological function of proteins and consequently affects the development, growth, and physiology of organisms. Despite an increasing knowledge of N-glycan biosynthesis and processing, we still understand very little about the biological function of individual N-glycan structures in plants. In particular, the N-glycan-processing steps mediated by Golgi-resident enzymes create a structurally diverse set of protein-linked carbohydrate structures. Some of these complex N-glycan modifications like the presence of β1,2-xylose, core α1,3-fucose or the Lewis a-epitope are characteristic for plants and are evolutionary highly conserved. In mammals, complex N-glycans are involved in different cellular processes including molecular recognition and signaling events. In contrast, the complex N-glycan function is still largely unknown in plants. Here, in this short review, I focus on important recent developments and discuss their implications for future research in plant glycobiology and plant biotechnology.
机译:天冬酰胺(N)连接的蛋白质糖基化是普遍存在的共翻译和翻译后修饰,可改变蛋白质的生物学功能,因此影响生物的发育,生长和生理。尽管对N-聚糖生物合成和加工的了解不断增加,但我们对植物中各个N-聚糖结构的生物学功能仍然了解甚少。特别地,由高尔基驻留酶介导的N-聚糖加工步骤产生了一组结构多样的蛋白质连接的碳水化合物结构。这些复杂的N-聚糖修饰中的一些修饰(例如β1,2-木糖,核心α1,3-岩藻糖或Lewis a表位的存在)是植物的特征,并且在进化上高度保守。在哺乳动物中,复杂的N-聚糖参与不同的细胞过程,包括分子识别和信号传递事件。相反,复杂的N-聚糖功能在植物中仍然是未知的。在这里,在这篇简短的评论中,我重点介绍了重要的最新进展,并讨论了它们对植物糖生物学和植物生物技术的未来研究的意义。

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