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位于溶酶体酶组织蛋白酶D新位点的天冬酰胺连接寡糖的磷酸化作用

Phosphorylation of Asn-linked oligosaccharides located at novel sites on the lysosomal enzyme cathepsin D.

作者信息

Cantor A B, Kornfeld S

机构信息

Department of Medicine, Washington University School of Medicine, St. Louis, Missouri 63110.

出版信息

J Biol Chem. 1992 Nov 15;267(32):23357-63.

PMID:1331083
Abstract

We have examined the phosphorylation of Asn-linked oligosaccharides introduced at seven novel sites on human cathepsin D to determine whether the location of an oligosaccharide on a lysosomal enzyme affects its ability to serve as a substrate for UDP-GlcNAc:lysosomal enzyme N-acetylglucosamine-1-phosphotransferase (phosphotransferase), the enzyme that catalyzes the initial step in the biosynthesis of mannose 6-phosphate residues. The glycosylation sites were introduced into the cathepsin D cDNA by site-directed mutagenesis and were selected to be widely distributed over the surface of the molecule. When the constructs were expressed in Xenopus oocytes, the oligosaccharides at each glycosylation site were phosphorylated at levels considerably above background (19-70% phosphorylation versus < 0.4% for the secretory protein glycopepsinogen). However, oligosaccharides located closer to the essential components of the phosphotransferase recognition domain (lysine 203 and amino acids 265-292) were phosphorylated better than oligosaccharides located further away. Similar results were obtained for oligosaccharides at homologous sites on a pepsinogen/cathepsin D chimera containing only lysine 203 and residues 265-319 of cathepsin D, although the absolute levels of phosphorylation were lower. These results demonstrate that there is considerable flexibility in the placement of glycosylation sites on cathepsin D in terms of the ability of the oligosaccharides to serve as substrates for phosphotransferase, although oligosaccharides located closer to the phosphotransferase recognition determinant are preferentially phosphorylated.

摘要

我们检测了在人组织蛋白酶D的七个新位点引入的N-糖链的磷酸化情况,以确定溶酶体酶上糖链的位置是否会影响其作为UDP-GlcNAc:溶酶体酶N-乙酰葡糖胺-1-磷酸转移酶(磷酸转移酶)底物的能力,该酶催化甘露糖6-磷酸残基生物合成的起始步骤。通过定点诱变将糖基化位点引入组织蛋白酶D的cDNA中,并选择使其广泛分布于分子表面。当构建体在非洲爪蟾卵母细胞中表达时,每个糖基化位点的糖链磷酸化水平大大高于背景水平(19%-70%的磷酸化,而分泌蛋白糖胃蛋白酶原的磷酸化水平<0.4%)。然而,位于更靠近磷酸转移酶识别结构域关键成分(赖氨酸203和氨基酸265-292)的糖链比位于更远位置的糖链磷酸化效果更好。对于仅含有赖氨酸203和组织蛋白酶D的残基265-319的胃蛋白酶原/组织蛋白酶D嵌合体上同源位点的糖链,也获得了类似结果,尽管磷酸化的绝对水平较低。这些结果表明,就糖链作为磷酸转移酶底物的能力而言,组织蛋白酶D上糖基化位点的位置具有相当大的灵活性,尽管更靠近磷酸转移酶识别决定簇的糖链优先被磷酸化。

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