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The Arabidopsis tonoplast is almost devoid of glycoproteins with complex N-glycans unlike the rat lysosomal membrane

机译:与大鼠溶酶体膜不同拟南芥的液泡膜几乎不含具有复杂N-聚糖的糖蛋白

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摘要

The distribution of the N-glycoproteome in integral membrane proteins of the vacuolar membrane (tonoplast) or the plasma membrane of Arabidopsis thaliana and, for further comparison, of the Rattus norvegicus lysosomal and plasma membranes, was analyzed. In silico analysis showed that potential N-glycosylation sites are much less frequent in tonoplast proteins. Biochemical analysis of Arabidopsis subcellular fractions with the lectin concanavalin A, which recognizes mainly unmodified N-glycans, or with antiserum against Golgi-modified N-glycans confirmed the in silico results and showed that, unlike the plant plasma membrane, the tonoplast is almost or totally devoid of N-glycoproteins with Golgi-modified glycans. Lysosomes share with vacuoles the hydrolytic functions and the position along the secretory pathway; however, our results indicate that their membranes had a divergent evolution. We propose that protection against the luminal hydrolases that are abundant in inner hydrolytic compartments, which seems to have been achieved in many lysosomal membrane proteins by extensive N-glycosylation of the luminal domains, has instead been obtained in the vast majority of tonoplast proteins by limiting the length of such domains.
机译:分析了N-糖蛋白组在拟南芥的液泡膜(液泡膜)或质膜的整体膜蛋白中的分布,以及为了进一步比较,褐家鼠的溶酶体和质膜的分布。计算机分析表明,在液泡膜蛋白中潜在的N-糖基化位点要少得多。用凝集素伴刀豆球蛋白A(主要识别未修饰的N-聚糖)或抗高尔基修饰的N-聚糖的抗血清对拟南芥亚细胞级分进行生化分析,证实了计算机模拟的结果,结果表明,与植物质膜不同,液泡膜几乎或完全不含高尔基修饰的聚糖的N-糖蛋白。溶酶体与液泡共享水解功能和分泌途径中的位置。然而,我们的结果表明它们的膜有不同的演变。我们提出,针对内部水解区隔中丰富的管腔水解酶的保护似乎已通过限制管腔结构域的广泛N-糖基化而在许多溶酶体膜蛋白中实现,而在大多数液泡膜蛋白中却受到限制这些域的长度。

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