Goldberg D E, Kornfeld S
J Biol Chem. 1981 Dec 25;256(24):13060-7.
High mannose-type oligosaccharides of acid hydrolases are phosphorylated by the transfer of N-acetyl-glucosamine 1-phosphate to the 6 position of mannose. This is followed by removal of the covering N-acetyl-glucosamine residue to expose a phosphomonoester. We have examined the kinetics of this phosphorylation pathway in the murine macrophage line P388D1. Cells were labeled with [2-3H]mannose for 15-20 min and then chased with unlabeled mannose for various times up to 5 h. The lysosomal enzyme beta-glucuronidase was immunoprecipitated and its oligosaccharide units examined for extent of phosphorylation and uncovering. The first phosphorylated oligosaccharides were detected after 20 min of labeling. Most of the phosphorylation occurred during the first 40 min of the chase period, and a maximum of 30% of the oligosaccharide units were eventually phosphorylated. Oligosaccharides with one and two phosphodiesters were found. The earliest detectable phosphorylated species were devoid of the glucose residues known to be present on the lipid-linked oligosaccharide precursor. Uncovering of the phosphodiesters began shortly after the oligosaccharides were phosphorylated and occurred concomitantly with the removal of outer mannose residues. Taken together, these data demonstrate that phosphorylation of lysosomal enzyme oligosaccharides is a post-translational event. Proteolytic fragmentation of [3H]mannose-labeled beta-glucuronidase and partial digestion of [3H]leucine-labeled beta-glucuronidase with endo-beta-N-acetylglucosaminidase H suggest that there are 3 glycosylation sites per subunit. Each glycosylation site is partially phosphorylated. A portion of the high mannose oligosaccharides at one site are processed to complex-type units.
酸性水解酶的高甘露糖型寡糖通过将N-乙酰葡糖胺1-磷酸转移至甘露糖的6位而被磷酸化。随后去除覆盖的N-乙酰葡糖胺残基以暴露出磷酸单酯。我们已经研究了小鼠巨噬细胞系P388D1中这条磷酸化途径的动力学。用[2-³H]甘露糖标记细胞15 - 20分钟,然后用未标记的甘露糖追踪不同时间直至5小时。溶酶体酶β-葡糖醛酸酶通过免疫沉淀进行分离,并且检测其寡糖单元的磷酸化程度和去封盖情况。标记20分钟后检测到首个磷酸化的寡糖。大部分磷酸化发生在追踪期的前40分钟,最终最多30%的寡糖单元被磷酸化。发现了具有一个和两个磷酸二酯的寡糖。最早可检测到的磷酸化种类不含已知存在于脂质连接寡糖前体上的葡萄糖残基。寡糖磷酸化后不久磷酸二酯的去封盖就开始了,并且与外层甘露糖残基的去除同时发生。综上所述,这些数据表明溶酶体酶寡糖的磷酸化是一个翻译后事件。用内切β-N-乙酰葡糖胺糖苷酶H对[³H]甘露糖标记的β-葡糖醛酸酶进行蛋白水解片段化以及对[³H]亮氨酸标记的β-葡糖醛酸酶进行部分消化表明每个亚基有3个糖基化位点。每个糖基化位点部分被磷酸化。一个位点的一部分高甘露糖寡糖被加工成复合型单元。