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首页> 外文期刊>Journal of cell biology >Role for phosphatidylinositol 3-kinase in the sorting and transport of newly synthesized lysosomal enzymes in mammalian cells.
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Role for phosphatidylinositol 3-kinase in the sorting and transport of newly synthesized lysosomal enzymes in mammalian cells.

机译:磷脂酰肌醇3-激酶在哺乳动物细胞中新合成的溶酶体酶的分选和运输中的作用。

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摘要

Previous work with the yeast Saccharomyces cerevisiae has demonstrated a role for a phosphatidylinositol-specific PI 3-kinase, the product of the VPS34 gene, in the targeting of newly synthesized proteins to the vacuole, an organelle functionally equivalent to mammalian lysosomes (Schu, P. V., K. Takegawa, M. J. Fry, J. H. Stack, M. D. Waterfield, and S. D. Emr. 1993. Science [Wash. DC]. 260:88-91). The activity of Vps34p kinase is significantly reduced by the PI 3-kinase inhibitors wortmannin, a fungal metabolite, and LY294002, a quercetin analog (Stack, J. H., and S. D. Emr. 1994. J. Biol. Chem. 269:31552-31562). We show here that at concentrations which inhibit VPS34-encoded PI 3-kinase activity, wortmannin also inhibits the processing and delivery of newly synthesized cathepsin D to lysosomes in mammalian cells with half-maximal inhibition of delivery occurring at 100 nM wortmannin. As a result of wortmannin action, newly synthesized, unprocessed cathepsin D is secreted into the media. Moreover, after accumulation in the trans-Golgi network (TGN) at 20 degrees C, cathepsin D was rapidly missorted to the secretory pathway after addition of wortmannin and shifting to 37 degrees C. At concentrations that inhibited lysosomal enzyme delivery, both wortmannin and LY294002 caused a highly specific dilation of mannose 6-phosphate receptor (M6PR)-enriched vesicles of the prelysosome compartment (PLC), which swelled to approximately 1 micron within 15 min after treatment. With increasing time, the inhibitors caused a significant yet reversible change in M6PR distribution. By 3 h of treatment, the swollen PLC vacuoles were essentially depleted of receptors and, in addition, there was a fourfold loss of receptors from the cell surface. However, M6PRs were still abundant in the TGN. These results are most consistent with the interpretation that PI 3-kinase regulates the trafficking of lysosomal enzymes by interfering with a M6PR-dependent sorting event in the TGN. Moreover, they provide evidence that trafficking of soluble hydrolases to mammalian lysosomes and yeast vacuoles rely on similar regulatory mechanisms.
机译:酿酒酵母的先前工作已证明,磷脂酰肌醇特异性PI 3-激酶(VPS34基因的产物)在将新合成的蛋白质靶向液泡(其功能与哺乳动物溶酶体相同的细胞器)中起着作用。 ,K。Takegawa,MJ Fry,JH Stack,MD Waterfield和SD Emr。1993. Science [Wash。DC]。260:88-91)。 PI 3-激酶抑制剂渥曼青霉素(真菌代谢产物)和LY294002(槲皮素类似物)显着降低了Vps34p激酶的活性(Stack,JH和SD Emr。1994. J. Biol。Chem。269:31552-31562) 。我们在此处显示了在抑制VPS34编码的PI 3激酶活性的浓度下,渥曼青霉素还抑制了哺乳动物细胞中新合成的组织蛋白酶D向溶酶体的加工和传递,在100 nM渥曼青霉素中传递的抑制作用最大。由于渥曼青霉素的作用,新合成的未加工的组织蛋白酶D被分泌到培养基中。此外,在20摄氏度下在反高尔基网络(TGN)中积累后,组织蛋白酶D在加入渥曼青霉素并转移至37摄氏度后迅速向分泌途径转移。在抑制溶酶体酶传递的浓度下,渥曼青霉素和LY294002引起早溶体区室(PLC)富含甘露糖6-磷酸受体(M6PR)的囊泡高度特异性的扩张,在治疗后15分钟内膨胀至大约1微米。随着时间的增加,抑制剂会导致M6PR分布发生明显但可逆的变化。通过3小时的处理,肿胀的PLC液泡基本上耗尽了受体,此外,从细胞表面丧失了四倍的受体。但是,TGN中的M6PR仍然很丰富。这些结果与PI 3-激酶通过干扰TGN中M6PR依赖性分选事件来调节溶酶体酶的运输的解释最一致。此外,他们提供了证据证明可溶性水解酶向哺乳动物溶酶体和酵母液泡的运输依赖于类似的调节机制。

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