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首页> 外文期刊>Journal of cell biology >Lysosomal membrane dynamics: structure and interorganellar movement of a major lysosomal membrane glycoprotein.
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Lysosomal membrane dynamics: structure and interorganellar movement of a major lysosomal membrane glycoprotein.

机译:溶酶体膜动力学:主要溶酶体膜糖蛋白的结构和细胞间运动。

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摘要

The biochemistry and intracellular transit of an integral membrane glycoprotein of chicken fibroblast lysosomes were studied with monoclonal antibody techniques. The glycoprotein had an apparent molecular weight of 95,000-105,000. Structural analysis involving metabolic labeling with [35S]methionine and cleavage with glycosidases revealed the presence of numerous oligosaccharide chains N-linked to a core polypeptide of apparent molecular weight 48,000. A primary localization of the glycoprotein to lysosomes was demonstrated by the coincidence of antibody binding sites with regions of acridine orange uptake, electron immunocytochemical labeling on the inner surface of lysosome-like vacuolar membranes, and preferential association of the glycoprotein with lysosome-enriched subcellular fractions from Percoll gradients. In addition, small quantities of the glycoprotein were detected on endocytic vesicle and plasma membranes. To study the intracellular pathway of the glycoprotein, we used a monoclonal antibody whose binding to the glycoprotein at the cell surface had no effect on the number or subcellular distribution of antigen molecules. Incubation of chicken fibroblasts with monoclonal antibody at 37 degrees C led to the rapid uptake and subsequent delivery of antibody to lysosomes, where antibody was degraded. This process continued undiminished for many hours on cells continuously exposed to the antibody and was not blocked by the addition of cycloheximide. The rate at which antigen sites were replenished in the plasma membrane of cells prelabeled with antibody (t1/2 = 2 min) was essentially equivalent to the rate of internalization of antibody bound to cell surfaces. These results suggest that there is a continuous and rapid exchange of this glycoprotein between plasma membrane and the membranes of endosomes and/or lysosomes.
机译:用单克隆抗体技术研究了鸡成纤维细胞溶酶体中整合膜糖蛋白的生物化学和细胞内转运。糖蛋白的表观分子量为95,000-105,000。涉及用[35S]蛋氨酸进行代谢标记并用糖苷酶切割的结构分析表明,存在许多N-连接至表观分子量为48,000的核心多肽的寡糖链。通过抗体结合位点与of啶橙摄取的区域,在溶酶体样液泡膜内表面上的电子免疫细胞化学标记以及糖蛋白与富含溶酶体的亚细胞部分的优先结合,证明了糖蛋白对溶酶体的初步定位。来自Percoll渐变。另外,在内吞囊泡和质膜上检测到少量的糖蛋白。为了研究糖蛋白的细胞内途径,我们使用了一种单克隆抗体,其在细胞表面与糖蛋白的结合对抗原分子的数量或亚细胞分布没有影响。鸡成纤维细胞与单克隆抗体在37°C的温育下导致抗体的快速吸收和随后的溶酶体递送,在溶酶体中抗体被降解。在连续暴露于抗体的细胞上,该过程持续了许多小时,并且没有被添加环己酰亚胺阻断。预先用抗体标记的细胞的质膜中抗原位点被补充的速率(t1 / 2 = 2分钟)基本上等于结合到细胞表面的抗体的内在化速率。这些结果表明,该糖蛋白在质膜与内体和/或溶酶体的膜之间连续且快速地交换。

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