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首页> 外文期刊>Molecular Endocrinology >Carboxypeptidase E and Secretogranin III Coordinately Facilitate Efficient Sorting of Proopiomelanocortin to the Regulated Secretory Pathway in AtT20 Cells
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Carboxypeptidase E and Secretogranin III Coordinately Facilitate Efficient Sorting of Proopiomelanocortin to the Regulated Secretory Pathway in AtT20 Cells

机译:羧肽酶E和Secretogranin III协同促进Proopiomelanocortin对AtT20细胞调节分泌途径的有效分选。

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Proopiomelanocortin (POMC) is a multivalent prohormone that can be processed into at least 7 biologically active peptide hormones. Processing can begin in the trans-Golgi network (TGN) and continues in the secretory granules of the regulated secretory pathway (RSP). Sorting of POMC into these granules is a complex process. Previously, a membrane-associated form of carboxypeptidase E (CPE) was shown to bind to POMC and facilitate its trafficking into these granules. More recently, secretogranin III (SgIII) was also found to affect POMC trafficking. Here, we show by RNA silencing that CPE and SgIII play a synergistic role in the trafficking of POMC to granules of the RSP in AtT20 cells. Reduction of either protein resulted in increased constitutive secretion of POMC and chromogranin A, which was increased even further when both proteins were reduced together, indicative of missorting at the TGN. In SgIII-reduced cells, POMC accumulated in a compartment that cofractionated and colocalized with syntaxin 6, a marker of the TGN, on sucrose density gradients and in immunocytochemistry, respectively, indicating an accumulation of this protein in the presumed sorting compartment. Regulated secretion of ACTH, as a measure of sorting and processing of POMC in mature granules, was reduced in the SgIII down-regulated cells but was increased in the CPE down-regulated cells. These results suggest that multiple sorting systems exist, providing redundancy to ensure the important task of continuous and accurate trafficking of prohormones to the granules of the RSP for the production of peptide hormones.
机译:Proopiomelanocortin(POMC)是一种多价激素,可被加工成至少7种具有生物活性的肽激素。加工可以在反高尔基网络(TGN)中开始,并在受调节的分泌途径(RSP)的分泌颗粒中继续进行。将POMC分为这些颗粒是一个复杂的过程。以前,显示出膜相关形式的羧肽酶E(CPE)与POMC结合并促进其向这些颗粒中的运输。最近,还发现了促分泌素III(SgIII)影响POMC的贩运。在这里,我们通过RNA沉默显示CPE和SgIII在将POMC转运到AtT20细胞中RSP颗粒中起着协同作用。任一种蛋白质的还原都会导致POMC和嗜铬粒蛋白A的组成型分泌增加,当两种蛋白质一起还原时,这种分泌甚至会进一步增加,这表明TGN发生错失。在SgIII还原的细胞中,POMC积累在一个与蔗糖密度梯度和免疫细胞化学中的TGN标记句法6共分和共定位的小室中,表明该蛋白在假定的分选室中积累。作为成熟颗粒中POMC的分类和加工的一种指标,ACTH的调节分泌在SgIII下调的细胞中减少,但在CPE下调的细胞中增加。这些结果表明存在多种分选系统,提供了冗余以确保将激素原连续且准确地运输到RSP颗粒以生产肽激素的重要任务。

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