首页> 外文期刊>Journal of cell biology >Lysosomal enzyme trafficking in mannose 6-phosphate receptor-positive mouse L-cells: demonstration of a steady state accumulation of phosphorylated acid hydrolases.
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Lysosomal enzyme trafficking in mannose 6-phosphate receptor-positive mouse L-cells: demonstration of a steady state accumulation of phosphorylated acid hydrolases.

机译:甘露糖6磷酸受体阳性小鼠L细胞中的溶酶体酶运输:磷酸化酸水解酶稳态积累的证明。

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During their transport from the endoplasmic reticulum to lysosomes, newly synthesized acid hydrolases are phosphorylated in the Golgi apparatus to generate a common recognition marker, mannose 6-phosphate (Man 6-P). The phosphorylated acid hydrolases then bind to the Man 6-P receptor and are transported by an unknown route to lysosomes. To learn more about the delivery pathway, we examined the fate of the phosphorylated oligosaccharides synthesized by a Man 6-P receptor-positive line of mouse L-cells. In contrast to the rapid degradation of the recognition marker previously observed in mouse lymphoma cells (Gabel, C. A., D. E. Goldberg, and S. Kornfield. 1982. J. Cell Biol., 95:536-542), the number of high mannose oligosaccharides phosphorylated by the L-cells after a 30-min pulse labeling with [2-3H]mannose increased continuously during a subsequent 4-h chase period to a maximum of 9.3% of the total cell-associated structures. After 19 h of chase the absolute number of phosphorylated oligosaccharides declined, but the loss was accompanied by a general loss of cellular oligosaccharides such that 7.4% of the cell-associated high mannose oligosaccharides remained phosphorylated. The longevity of the Man 6-P recognition marker in the L-cells was verified by analyzing the ability of an individual acid hydrolase, beta-glucuronidase, to serve as a ligand for the Man 6-P receptor. At least 60% of the steady state beta-glucuronidase molecules isolated from the L-cells could undergo receptor-mediated endocytosis into enzyme-deficient human fibroblasts. Dense lysosomal granules isolated by metrizamide gradient centrifugation from [3H]mannose-labeled L-cells were found to be highly enriched in their content of phosphomonoester-containing oligosaccharides. The data indicate that acid hydrolases may retain their Man 6-P recognition markers within lysosomes, and suggest the possibility that dephosphorylation occurs at a nonlysosomal location through which the newly synthesized enzymes pass en route to lysosomes.
机译:在它们从内质网运输到溶酶体的过程中,新合成的酸性水解酶在高尔基体中被磷酸化,生成一个共同的识别标记,即6-磷酸甘露糖(Man 6-P)。然后,磷酸化的酸水解酶与Man 6-P受体结合,并通过未知途径转运至溶酶体。要了解有关传递途径的更多信息,我们检查了由小鼠L细胞的Man 6-P受体阳性细胞系合成的磷酸化寡糖的命运。与先前在小鼠淋巴瘤细胞(Gabel,CA,DE Goldberg和S. Kornfield。1982. J. Cell Biol。,95:536-542)中观察到的识别标记快速降解相反,高甘露糖寡糖的数量用[2-3H]甘露糖标记30分钟后,L细胞磷酸化后,在随后的4小时追踪期间持续增加,最多占总细胞相关结构的9.3%。追逐19小时后,磷酸化寡糖的绝对数量下降,但是损失伴随着细胞寡糖的普遍损失,使得与细胞相关的高甘露糖寡糖的7.4%保持磷酸化。通过分析单个酸性水解酶β-葡糖醛酸糖苷酶作为Man 6-P受体配体的能力,验证了L细胞中Man 6-P识别标记的寿命。从L细胞中分离出来的稳态β-葡萄糖醛酸苷酶分子中至少有60%可以经历受体介导的内吞作用,进入缺乏酶的人成纤维细胞。从[3H]甘露糖标记的L细胞中,通过甲rizamide梯度离心分离的密集溶酶体颗粒被发现富含磷酸单酯寡糖。数据表明酸性水解酶可以在溶酶体中保留其Man 6-P识别标记,并表明在非溶酶体位置发生去磷酸化的可能性,新合成的酶通过该途径进入溶酶体。

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