首页> 外文期刊>Journal of cell biology >The propeptide of preprosomatostatin mediates intracellular transport and secretion of alpha-globin from mammalian cells.
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The propeptide of preprosomatostatin mediates intracellular transport and secretion of alpha-globin from mammalian cells.

机译:前前列腺抑素的前肽介导哺乳动物细胞内的细胞内运输和α-珠蛋白的分泌。

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We have investigated the role of the somatostatin propeptide in mediating intracellular transport and sorting to the regulated secretory pathway. Using a retroviral expression vector, two fusion proteins were expressed in rat pituitary (GH3) cells: a control protein consisting of the beta-lactamase signal peptide fused to chimpanzee alpha-globin (142 amino acids); and a chimera of the somatostatin signal peptide and proregion (82 amino acids) fused to alpha-globin. Control globin was translocated into the endoplasmic reticulum as determined by accurate cleavage of its signal peptide; however, alpha-globin was not secreted but was rapidly and quantitatively degraded intracellularly with a t 1/2 of 4-5 min. Globin degradation was insensitive to chloroquine, a drug which inhibits lysosomal proteases, but was inhibited at 16 degrees C suggesting proteolysis occurred during transport to the cis-Golgi apparatus. In contrast to the control globin, approximately 30% of the somatostatin propeptide-globin fusion protein was transported to the distal elements of the Golgi apparatus where it was endoproteolytically processed. Processing of the chimera occurred in an acidic intracellular compartment since cleavage was inhibited by 25 microM chloroquine. 60% of the transported chimera was cleaved at the Arg-Lys processing site in native prosomatostatin yielding "mature" alpha-globin. Most significantly, approximately 50% of processed alpha-globin was sorted to the regulated pathway and secreted in response to 8-Br-cAMP. We conclude that the somatostatin propeptide mediated transport of alpha-globin from the endoplasmic reticulum to the trans-Golgi network by protecting molecules from degradation and in addition, facilitated packaging of alpha-globin into vesicles whose secretion was stimulated by cAMP.
机译:我们已经研究了生长抑素前肽在介导细胞内运输和分类到调节的分泌途径中的作用。使用逆转录病毒表达载体,在大鼠垂体(GH3)细胞中表达了两种融合蛋白:一种由与黑猩猩α-球蛋白融合的β-内酰胺酶信号肽组成的对照蛋白(142个氨基酸);另一种是由β-内酰胺酶信号肽融合而成的。以及生长抑素信号肽和与α-珠蛋白融合的前区(82个氨基酸)的嵌合体。对照球蛋白通过准确切割其信号肽而确定,并转移到内质网中。然而,α-珠蛋白并没有被分泌,而是在细胞内迅速定量地降解,t 1/2为4-5分钟。球蛋白降解对氯喹不敏感,氯喹是一种抑制溶酶体蛋白酶的药物,但在16摄氏度时被抑制,表明在运输至顺式高尔基体的过程中发生了蛋白水解。与对照球蛋白相反,生长抑素前肽-球蛋白融合蛋白的大约30%被转运到高尔基体的远端元件,并在此进行内蛋白水解处理。嵌合体的加工发生在酸性细胞内区室,因为切割被25 microM氯喹抑制。 60%的运输的嵌合体在天然前列腺素中的Arg-Lys加工位点裂解,产生“成熟的”α-珠蛋白。最重要的是,约有50%的加工过的α-珠蛋白被分类到调节的途径,并响应8-Br-cAMP分泌。我们得出的结论是,生长抑素前肽通过保护分子免于降解而介导了α-珠蛋白从内质网向反式高尔基体网络的运输,此外,还促进了将α-珠蛋白包装到由cAMP刺激分泌的囊泡中。

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