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Mannose trimming reactions in the early stages of the N-glycan processing pathway

机译:N-聚糖加工途径早期的甘露糖修整反应

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摘要

In all eukaryotes, asparagine-linked glycosylation is one of the most common co- and posttranslational modifications of secretory and membrane proteins. In mammals, N-glycosylation is involved in several cellular processes including protein folding, protein stability, intracellular trafficking and interactions with other proteins. Until recently, the functional importance of protein N-glycosylation in plants has been widely elusive. We have now identified class I OC-mannosidase mutants (mns) impairedin de-mannosylation of N-glycans.1 The mns mutants accumulate high amounts of oligo-mannosidic N-glycans and display striking cell wall alterations and defects in root development. Especially the mnsl mns2 mns3 triple mutant forms short roots with radially swollen cortical cells and displays alterations in development of aerial plant parts. Our data indicate that the N-glycan processing defects in mns mutants affect one or several glycoproteins involved in cell wall formation, which could be linked tothe potential impact of mannose trimming on glycoprotein quality control in the endoplasmic reticulum (ER) and ER-associated degradation of misfolded glycoproteins.
机译:在所有真核生物中,天冬酰胺连接的糖基化是分泌蛋白和膜蛋白最常见的共翻译和翻译后修饰之一。在哺乳动物中,N-糖基化参与几种细胞过程,包括蛋白质折叠,蛋白质稳定性,细胞内运输以及与其他蛋白质的相互作用。直到最近,蛋白质N-糖基化在植物中的功能重要性仍被广泛了解。我们现已鉴定出I类OC甘露糖苷酶突变体(mns)impairedin去甘露糖基化的N-聚糖。1mns突变体积聚了大量的低聚甘露糖苷N-聚糖,并在根系发育中表现出惊人的细胞壁变化和缺陷。特别是mnsl mns2 mns3三重突变体形成了具有径向肿胀的皮质细胞的短根,并且在空中植物部分的发育中显示出变化。我们的数据表明,mns突变体中的N-聚糖加工缺陷影响一种或几种参与细胞壁形成的糖蛋白,这可能与甘露糖修整对内质网(ER)糖蛋白质量控制和与ER相关的降解的潜在影响有关。错误折叠的糖蛋白。

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