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酸性水解酶的内吞后成熟:溶酶体前加工的证据。

Postendocytic maturation of acid hydrolases: evidence of prelysosomal processing.

作者信息

Gabel C A, Foster S A

机构信息

Department of Anatomy and Cell Biology, College of Physicians and Surgeons, Columbia University, New York 10032.

出版信息

J Cell Biol. 1987 Oct;105(4):1561-70. doi: 10.1083/jcb.105.4.1561.

Abstract

The mannose 6-phosphate (Man 6-P) receptor operates to transport both endogenous newly synthesized acid hydrolases and extracellular enzymes to the lysosomal compartment. In a previous study (Gabel, C. A., and S. A. Foster, 1986, J. Cell Biol., 103:1817-1827), we noted that beta-glucuronidase molecules internalized by mouse L-cells via the Man 6-P receptor undergo a proteolytic cleavage and a limited dephosphorylation. In this report, we present evidence that indicates that the postendocytic alterations of the acid hydrolase molecules occur at a site through which the enzymes pass en route to the lysosomal compartment. Mouse L-cells incubated at 20 degrees C with beta-glucuronidase (isolated from mouse macrophage secretions) internalize the enzyme in a process that is inhibited by Man 6-P but unaffected by cycloheximide. As such, the linear accumulation of the ligand observed at 20 degrees C appears to occur through the continued recycling of the cell surface Man 6-P receptor. The subcellular distribution of the internalized ligands was assessed after homogenization of the cells and fractionation of the extracts by density gradient centrifugation. In contrast to the accumulation of the ligand within lysosomes at 37 degrees C, the beta-glucuronidase molecules internalized by the L cells at 20 degrees C accumulate within a population of vesicles that sediment at the same density as endocytic vesicles. Biochemical analysis of the internalized ligands indicates that: (a) the subunit molecular mass of both beta-glucuronidase and beta-galactosidase decrease upon cell association relative to the input form of the enzymes, and (b) the beta-glucuronidase molecules experience a limited dephosphorylation such that high-mannose-type oligosaccharides containing two phosphomonoesters are converted to single phosphomonoester forms. The same two post-endocytic alterations occur after the internalization of beta-glucuronidase by human I-cell disease fibroblasts, despite the low acid hydrolase content of these cells. The results indicate, therefore, that acid hydrolases internalized via the Man 6-P receptor are processed within the endocytic compartment. In that endogenous newly synthesized acid hydrolases display similar alterations during their maturation, the results further suggest that the endosomal compartment is involved in the sorting of ligands transported via both the cell surface and intracellular Man 6-P receptor.

摘要

甘露糖6-磷酸(Man 6-P)受体负责将内源性新合成的酸性水解酶和细胞外酶转运至溶酶体区室。在之前的一项研究中(Gabel, C. A., and S. A. Foster, 1986, J. Cell Biol., 103:1817 - 1827),我们注意到小鼠L细胞通过Man 6-P受体内化的β-葡萄糖醛酸酶分子会经历蛋白水解切割和有限的去磷酸化过程。在本报告中,我们提供的证据表明,酸性水解酶分子的内吞后改变发生在酶通往溶酶体区室途中经过的一个位点。将小鼠L细胞在20℃下与β-葡萄糖醛酸酶(从小鼠巨噬细胞分泌物中分离)一起孵育,该酶以一种受Man 6-P抑制但不受放线菌酮影响的过程被细胞内化。因此,在20℃下观察到的配体线性积累似乎是通过细胞表面Man 6-P受体的持续循环发生的。在细胞匀浆并通过密度梯度离心对提取物进行分级分离后,评估内化配体的亚细胞分布。与37℃时配体在溶酶体内的积累不同,L细胞在20℃内化的β-葡萄糖醛酸酶分子积累在一群与内吞小泡密度相同的小泡中。对内化配体的生化分析表明:(a)相对于酶的输入形式,β-葡萄糖醛酸酶和β-半乳糖苷酶的亚基分子量在与细胞结合后均降低,并且(b)β-葡萄糖醛酸酶分子经历有限的去磷酸化,使得含有两个磷酸单酯的高甘露糖型寡糖转化为单磷酸单酯形式。尽管人I型细胞病成纤维细胞的酸性水解酶含量较低,但β-葡萄糖醛酸酶被其内化后也会发生同样的两种内吞后改变。因此,结果表明通过Man 6-P受体内化的酸性水解酶在内吞区室内进行加工。鉴于内源性新合成的酸性水解酶在成熟过程中表现出类似的改变,结果进一步表明内体区室参与了通过细胞表面和细胞内Man 6-P受体转运的配体的分选。

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