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溶酶体蛋白降解的选择性途径需要一种溶酶体内的热休克蛋白70。

An intralysosomal hsp70 is required for a selective pathway of lysosomal protein degradation.

作者信息

Agarraberes F A, Terlecky S R, Dice J F

机构信息

Sackler School of Graduate Biomedical Sciences, Department of Physiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Cell Biol. 1997 May 19;137(4):825-34. doi: 10.1083/jcb.137.4.825.

Abstract

Previous studies have implicated the heat shock cognate (hsc) protein of 73 kD (hsc73) in stimulating a lysosomal pathway of proteolysis that is selective for particular cytosolic proteins. This pathway is activated by serum deprivation in confluent cultured human fibroblasts. We now show, using indirect immunofluorescence and laser scanning confocal microscopy, that a heat shock protein (hsp) of the 70-kD family (hsp70) is associated with lysosomes (ly-hsc73). An mAb designated 13D3 specifically recognizes hsc73, and this antibody colocalizes with an antibody to lgp120, a lysosomal marker protein. Most, but not all, lysosomes contain ly-hsc73, and the morphological appearance of these organelles dramatically changes in response to serum withdrawal; the punctate lysosomes fuse to form tubules. Based on susceptibility to digestion by trypsin and by immunoblot analysis after two-dimensional electrophoresis of isolated lysosomes and isolated lysosomal membranes, most ly-hsc73 is within the lysosomal lumen. We determined the functional importance of the ly-hsc73 by radiolabeling cellular proteins with [3H]leucine and then allowing cells to endocytose excess mAb 13D3 before measuring protein degradation in the presence and absence of serum. The increased protein degradation in response to serum deprivation was completely inhibited by endocytosed mAb 13D3, while protein degradation in cells maintained in the presence of serum was unaffected. The intralysosomal digestion of endocytosed [3H]RNase A was not affected by the endocytosed mAb 13D3. These results suggest that ly-hsc73 is required for a step in the degradative pathway before protein digestion within lysosomes, most likely for the import of substrate proteins.

摘要

以往的研究表明,73kD的热休克同源蛋白(hsc73)可刺激一种蛋白水解的溶酶体途径,该途径对特定的胞质蛋白具有选择性。在汇合培养的人成纤维细胞中,血清剥夺可激活此途径。我们现在利用间接免疫荧光和激光扫描共聚焦显微镜显示,70kD家族的热休克蛋白(hsp70)与溶酶体相关(ly-hsc73)。一种名为13D3的单克隆抗体可特异性识别hsc73,该抗体与溶酶体标记蛋白lgp120的抗体共定位。大多数(但并非全部)溶酶体含有ly-hsc73,并且这些细胞器的形态外观会因血清撤除而发生显著变化;点状溶酶体融合形成小管。根据对胰蛋白酶消化的敏感性以及对分离的溶酶体和分离的溶酶体膜进行二维电泳后的免疫印迹分析,大多数ly-hsc73位于溶酶体腔内。我们通过用[3H]亮氨酸对细胞蛋白进行放射性标记,然后在测量有无血清存在时的蛋白降解之前,让细胞内吞过量的单克隆抗体13D3,来确定ly-hsc73的功能重要性。内吞的单克隆抗体13D3完全抑制了血清剥夺引起的蛋白降解增加,而在血清存在下维持的细胞中的蛋白降解不受影响。内吞的[3H]核糖核酸酶A的溶酶体内消化不受内吞的单克隆抗体13D3的影响。这些结果表明,ly-hsc73是溶酶体内蛋白消化之前降解途径中一个步骤所必需的,很可能是底物蛋白的导入所必需的。

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