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巨噬细胞内体含有可降解内吞蛋白配体的蛋白酶。

Macrophage endosomes contain proteases which degrade endocytosed protein ligands.

作者信息

Diment S, Stahl P

出版信息

J Biol Chem. 1985 Dec 5;260(28):15311-7.

PMID:3905794
Abstract

Rabbit alveolar macrophages rapidly internalize and degrade mannosylated bovine serum albumin (125I-mannose-BSA). Trichloroacetic acid-soluble degradation products appear in the cells as early as 6 min after uptake at 37 degrees C, and in the extracellular medium after 10 min. Incubation of endocytic vesicles containing this ligand in isotonic buffers at pH 7.4 + ATP resulted in intravesicular proteolysis, which was inhibited by monensin, nigericin, or ammonium chloride. At pH 5.0, degradation proceeded rapidly and was abolished by lysis of the vesicles with 0.1% Triton X-100. Readdition of lysosomes to the incubation mixture did not increase the rate of prelysosomal degradation. Proteolysis of 125I-mannose-BSA was optimal at pH 4.5, and inhibited by low concentrations of the cathepsin D inhibitor pepstatin A. After subcellular fractionation of the macrophages on Percoll gradients, 125I-mannose-BSA sedimented with prelysosomal vesicles and was not transported to secondary lysosomes. Addition of pepstatin A to extracellular medium during internalization of prebound 125I-mannose-BSA partially inhibited degradation of ligand, and resulted in transfer of undegraded 125I-mannose-BSA to lysosomes after 20 min. Using 125I-bovine serum albumin as a substrate for the protease in the presence of 0.1% Triton X-100, we have shown that as much as 36% of the total pepstatin A-sensitive activity sediments with nonlysosomal membranes. After intraendosomal iodination using lactoperoxidase, a labeled protease was isolated by affinity chromatography on pepstatin-agarose. The labeled protease, which had a subunit size of 46 kDa, was detected in endocytic vesicles after 5 min of internalization. These results suggest that a cathepsin D-like protease is responsible for the degradation of 125I-mannose-BSA in macrophages, and that this ligand is degraded in a prelysosomal vesicle.

摘要

兔肺泡巨噬细胞能迅速内化并降解甘露糖基化牛血清白蛋白(125I-甘露糖-BSA)。在37℃摄取后,早在6分钟时细胞内就出现了三氯乙酸可溶性降解产物,10分钟后出现在细胞外培养基中。在pH 7.4 + ATP的等渗缓冲液中孵育含有这种配体的内吞小泡,导致小泡内蛋白水解,莫能菌素、尼日利亚菌素或氯化铵可抑制这种水解。在pH 5.0时,降解迅速进行,用0.1% Triton X-100裂解小泡可消除降解。向孵育混合物中重新添加溶酶体并不会提高溶酶体前降解的速率。125I-甘露糖-BSA的蛋白水解在pH 4.5时最为适宜,并受到低浓度组织蛋白酶D抑制剂胃蛋白酶抑制剂A的抑制。在Percoll梯度上对巨噬细胞进行亚细胞分级分离后,125I-甘露糖-BSA与溶酶体前小泡一起沉淀,未转运至次级溶酶体。在预先结合的125I-甘露糖-BSA内化期间,向细胞外培养基中添加胃蛋白酶抑制剂A可部分抑制配体的降解,并导致20分钟后未降解的125I-甘露糖-BSA转移至溶酶体。在0.1% Triton X-100存在的情况下,使用125I-牛血清白蛋白作为蛋白酶的底物,我们发现多达36%的总胃蛋白酶抑制剂A敏感活性与非溶酶体膜一起沉淀。使用乳过氧化物酶进行内吞小泡内碘化后,通过在胃蛋白酶抑制剂-琼脂糖上进行亲和层析分离出一种标记的蛋白酶。这种标记的蛋白酶亚基大小为46 kDa,内化5分钟后在内吞小泡中被检测到。这些结果表明,一种组织蛋白酶D样蛋白酶负责巨噬细胞中125I-甘露糖-BSA的降解,并且这种配体在溶酶体前小泡中被降解。

相似文献

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Macrophage endosomes contain proteases which degrade endocytosed protein ligands.巨噬细胞内体含有可降解内吞蛋白配体的蛋白酶。
J Biol Chem. 1985 Dec 5;260(28):15311-7.
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Immunolocalization of endosomal cathepsin D in rabbit alveolar macrophages.
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Monensin inhibits recycling of macrophage mannose-glycoprotein receptors and ligand delivery to lysosomes.莫能菌素抑制巨噬细胞甘露糖糖蛋白受体的再循环以及配体向溶酶体的传递。
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Uptake and transport of mannosylated ligands by alveolar macrophages. Studies on ATP-dependent receptor-ligand dissociation.肺泡巨噬细胞对甘露糖基化配体的摄取与转运。ATP依赖性受体-配体解离的研究。
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The binding and processing of mannose-bovine serum albumin derivatives by rabbit alveolar macrophages. Effect of the sugar density.兔肺泡巨噬细胞对甘露糖-牛血清白蛋白衍生物的结合与处理。糖密度的影响。
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[125I]-insulin metabolism by the rat liver in vivo: evidence that a neutral thiol-protease mediates rapid intracellular insulin degradation.大鼠肝脏在体内对[125I]胰岛素的代谢:中性硫醇蛋白酶介导细胞内胰岛素快速降解的证据。
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