Kim Taeyoon, Loh Y Peng
Section on Cellular Neurobiology, National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD 20892, USA.
Mol Biol Cell. 2006 Feb;17(2):789-98. doi: 10.1091/mbc.e05-08-0755. Epub 2005 Nov 30.
Dense-core secretory granule (DCG) biogenesis is a prerequisite step for the sorting, processing, and secretion of neuropeptides and hormones in (neuro)endocrine cells. Previously, chromogranin A (CgA) has been shown to play a key role in the regulation of DCG biogenesis in vitro and in vivo. However, the underlying mechanism of CgA-mediated DCG biogenesis has not been explored. In this study, we have uncovered a novel mechanism for the regulation of CgA-mediated DCG biogenesis. Transfection of CgA into endocrine 6T3 cells lacking CgA and DCGs not only recovered DCG formation and regulated secretion but also prevented granule protein degradation. Genetic profiling of CgA-expressing 6T3 versus CgA- and DCG-deficient 6T3 cells, followed by real-time reverse transcription-polymerase chain reaction and Western blotting analyses, revealed that a serine protease inhibitor, protease nexin-1 (PN-1), was significantly up-regulated in CgA-expressing 6T3 cells. Overexpression of PN-1 in CgA-deficient 6T3 cells prevented degradation of DCG proteins at the Golgi apparatus, enhanced DCG biogenesis, and recovered regulated secretion. Moreover, depletion of PN-1 by antisense RNAs in CgA-expressing 6T3 cells resulted in the specific degradation of DCG proteins. We conclude that CgA increases DCG biogenesis in endocrine cells by up-regulating PN-1 expression to stabilize granule proteins against degradation.
致密核心分泌颗粒(DCG)的生物合成是神经内分泌细胞中神经肽和激素分类、加工及分泌的一个前提步骤。此前研究表明,嗜铬粒蛋白A(CgA)在体外和体内DCG生物合成的调控中发挥关键作用。然而,CgA介导DCG生物合成的潜在机制尚未得到探索。在本研究中,我们发现了一种CgA介导DCG生物合成调控的新机制。将CgA转染到缺乏CgA和DCG的内分泌6T3细胞中,不仅恢复了DCG的形成并调节了分泌,还防止了颗粒蛋白的降解。对表达CgA的6T3细胞与缺乏CgA和DCG的6T3细胞进行基因谱分析,随后进行实时逆转录聚合酶链反应和蛋白质印迹分析,结果显示,一种丝氨酸蛋白酶抑制剂——蛋白酶抑制因子-1(PN-1)在表达CgA的6T3细胞中显著上调。在缺乏CgA的6T3细胞中过表达PN-1可防止高尔基体中DCG蛋白的降解,增强DCG生物合成,并恢复调节性分泌。此外,在表达CgA的6T3细胞中用反义RNA耗尽PN-1会导致DCG蛋白的特异性降解。我们得出结论,CgA通过上调PN-1表达来稳定颗粒蛋白以防止其降解,从而增加内分泌细胞中的DCG生物合成。