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生物合成过程中溶酶体蛋白前体的分子间缔合。

Intermolecular association of lysosomal protein precursors during biosynthesis.

作者信息

Zhu Y, Conner G E

机构信息

Department of Cell Biology and Anatomy, University of Miami School of Medicine, Florida 33101.

出版信息

J Biol Chem. 1994 Feb 4;269(5):3846-51.

PMID:8106429
Abstract

To study the mechanism involved in mannose-6-phosphate (Man-6-P) independent lysosomal proenzyme membrane association, we used a reversible cross-linker to probe radiolabeled human HepG2 cells permeabilized with saponin in the presence of Man-6-P. After immunoprecipitation of the extracted and cross-linked cells with anti-cathepsin D antibody, followed by complete reduction of the immunoprecipitates and SDS-polyacrylamide gel electrophoresis analysis, we found that procathepsin D was specifically and transiently associated, independent of Man-6-P, with two co-synthesized glycoproteins having molecular masses of 68 and 72 kDa. Pulse-chase and cell fractionation experiments showed that the Man-6-P independent association of procathepsin D with the 68-kDa protein started in the rough endoplasmic reticulum, continued in the Golgi, but had no association with either membrane. The Man-6-P independent association of procathepsin D with the 72-kDa protein and the membrane was found in compartments all the way from the Golgi to the dense lysosome, where processing of procathepsin D is believed to occur and where procathepsin D dissociated from the 72-kDa protein and the membrane. Endo H digestion of the 72-kDa protein showed that this protein was partially resistant to Endo H, suggesting that membrane association of the procathepsin D-72-kDa protein complex probably began in a late Golgi compartment. Endo F digestion of the proteins showed both have the same molecular mass around 58 kDa. Using antiserum against human saposin C, we identified the two glycoproteins as forms of prosaposin with different glycosylation. The transient, Man-6-P independent, membrane association of the procathepsin D-prosaposin complex and the presence of this complex in heavy lysosomes indicated that the proteins were transported to the lysosome as a complex. The association of two lysosomal proteins in the endoplasmic reticulum early after synthesis suggested that preassembly of some lysosomal components occurs before the earliest previously identified steps in the sorting pathway.

摘要

为研究参与不依赖甘露糖-6-磷酸(Man-6-P)的溶酶体酶原膜结合的机制,我们使用一种可逆交联剂,在Man-6-P存在的情况下,探测经皂素通透处理的放射性标记人肝癌细胞HepG2。在用抗组织蛋白酶D抗体对提取并交联的细胞进行免疫沉淀后,接着对免疫沉淀物进行完全还原并进行SDS-聚丙烯酰胺凝胶电泳分析,我们发现组织蛋白酶原D特异性且短暂地与两种共同合成的糖蛋白结合,这两种糖蛋白分子量分别为68 kDa和72 kDa,且不依赖Man-6-P。脉冲追踪和细胞分级分离实验表明,组织蛋白酶原D与68 kDa蛋白的不依赖Man-6-P的结合始于粗面内质网,在高尔基体中持续存在,但与任何一种膜均无关联。组织蛋白酶原D与72 kDa蛋白及膜的不依赖Man-6-P的结合在从高尔基体到致密溶酶体的所有区室中均有发现,据信组织蛋白酶原D的加工在此发生,且组织蛋白酶原D在此从72 kDa蛋白和膜上解离。对72 kDa蛋白进行内切糖苷酶H消化表明,该蛋白对内切糖苷酶H有部分抗性,提示组织蛋白酶原D - 72 kDa蛋白复合物的膜结合可能始于高尔基体晚期区室。对这些蛋白进行内切糖苷酶F消化表明,二者在约58 kDa处具有相同分子量。使用抗人鞘脂激活蛋白C抗血清,我们将这两种糖蛋白鉴定为不同糖基化形式的鞘脂激活蛋白原。组织蛋白酶原D - 鞘脂激活蛋白原复合物短暂的、不依赖Man-6-P的膜结合以及该复合物在重溶酶体中的存在表明,这些蛋白作为复合物被转运至溶酶体。两种溶酶体蛋白在合成后早期在内质网中的结合提示,一些溶酶体成分的预组装发生在分选途径中最早先前确定的步骤之前。

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