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小鼠淋巴瘤细胞中溶酶体酶寡糖磷酸化:体内与甘露糖6-磷酸受体结合的特异性和动力学

Lysosomal enzyme oligosaccharide phosphorylation in mouse lymphoma cells: specificity and kinetics of binding to the mannose 6-phosphate receptor in vivo.

作者信息

Gabel C A, Goldberg D E, Kornfeld S

出版信息

J Cell Biol. 1982 Nov;95(2 Pt 1):536-42. doi: 10.1083/jcb.95.2.536.

Abstract

Phosphomannosyl residues on lysosomal enzymes serve as an essential component of the recognition marker necessary for binding to the mannose 6-phosphate (Man 6-P) receptor and translocation to lysosomes. The high mannose-type oligosaccharide units of lysosomal enzymes are phosphorylated by the following mechanism: N-acetylglucosamine 1-phosphate is transferred to the 6 position of a mannose residue to form a phosphodiester; then N- acetylglucosamine is removed to expose a phosphomonoester. We examined the kinetics of this phosphorylation pathway in the murine lymphoma BW5147.3 cell line to determine the state of oligosaccharide phosphorylation at the time the newly synthesized lysosomal enzymes bind to the receptor. Cells were labeled with [2-(3)H]mannose for 20 min and then chased for various times up to 4 h. The binding of newly synthesized glycoproteins to the Man 6-P receptor was followed by eluting the bound ligand with Man 6-P. Receptor-bound material was first detected at 30 min of chase and reached a maximum at 60 min of chase, at which time approximately 10 percent of the total phosphorylated oligosaccharides were associated with the receptor. During longer chase times, the total quantity of cellular phosphorylated oligosaccharides decreased with a half-time of 1.4 h, suggesting that the lysosomal enzymes had reached their destination and had been dephosphorylated. The structures of the phosphorylated aligosaccharides of the eluted ligand were then determined and compared with the phosphorylated oligosaccharides of molecules which were not bond to the receptor. The major phosphorylated oligosaccharide species present in the nonreceptor-bound material contained a single phosphosphodiester at all time examined. In contrast, receptor-bound oligosaccharides were greatly enriched in species possessing one and two phosphomonoesters. These results indicate that binding of newly synthesized lysosomal enzymes to the Man 6-P receptor occurs only after removal of the covering N- acetylglucosamine residues.

摘要

溶酶体酶上的磷酸甘露糖残基是与甘露糖6-磷酸(Man 6-P)受体结合并转运至溶酶体所需识别标记的重要组成部分。溶酶体酶的高甘露糖型寡糖单元通过以下机制进行磷酸化:N-乙酰葡糖胺1-磷酸转移至甘露糖残基的6位形成磷酸二酯;然后去除N-乙酰葡糖胺以暴露出磷酸单酯。我们研究了小鼠淋巴瘤BW5147.3细胞系中该磷酸化途径的动力学,以确定新合成的溶酶体酶与受体结合时寡糖的磷酸化状态。用[2-(3)H]甘露糖标记细胞20分钟,然后追踪不同时间直至4小时。新合成的糖蛋白与Man 6-P受体的结合通过用Man 6-P洗脱结合的配体来追踪。在追踪30分钟时首次检测到受体结合物质,并在追踪60分钟时达到最大值,此时约10%的总磷酸化寡糖与受体相关。在更长的追踪时间内,细胞磷酸化寡糖的总量以1.4小时的半衰期下降,表明溶酶体酶已到达其目的地并已去磷酸化。然后确定洗脱配体的磷酸化寡糖的结构,并与未与受体结合的分子的磷酸化寡糖进行比较。在所有检测时间,未与受体结合的物质中存在的主要磷酸化寡糖种类都含有一个磷酸二酯。相比之下,与受体结合的寡糖在含有一个和两个磷酸单酯的种类中大量富集。这些结果表明,新合成的溶酶体酶与Man 6-P受体的结合仅在去除覆盖的N-乙酰葡糖胺残基后发生。

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