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2
Electron microscopic immunocytochemical evidence for the involvement of the convertases PC1 and PC2 in the processing of proinsulin in pancreatic beta-cells.电子显微镜免疫细胞化学证据表明转化酶PC1和PC2参与胰腺β细胞中胰岛素原的加工过程。
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3
Colocalization of chaperone Cpn60, proinsulin and convertase PC1 within immature secretory granules of insulin-secreting cells suggests a role for Cpn60 in insulin processing.伴侣蛋白Cpn60、胰岛素原和转化酶PC1在胰岛素分泌细胞未成熟分泌颗粒中的共定位表明Cpn60在胰岛素加工过程中发挥作用。
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The Arg617-Arg618 cleavage site in the C-terminal domain of PC1 plays a major role in the processing and targeting of the enzyme within the regulated secretory pathway.PC1 C 末端结构域中的 Arg617-Arg618 切割位点在调节性分泌途径中该酶的加工和靶向过程中起主要作用。
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Maintained PC1 and PC2 expression in the AtT-20 variant cell line 6T3 lacking regulated secretion and POMC: restored POMC expression and regulated secretion after cAMP treatment.在缺乏调节性分泌和阿黑皮素原(POMC)的AtT - 20变异细胞系6T3中维持PC1和PC2表达:在cAMP处理后恢复了POMC表达和调节性分泌。
DNA Cell Biol. 1995 Feb;14(2):175-88. doi: 10.1089/dna.1995.14.175.
9
Long-term elevation of free fatty acids leads to delayed processing of proinsulin and prohormone convertases 2 and 3 in the pancreatic beta-cell line MIN6.游离脂肪酸的长期升高会导致胰腺β细胞系MIN6中胰岛素原以及激素原转化酶2和3的加工延迟。
Diabetes. 1999 Jul;48(7):1395-401. doi: 10.2337/diabetes.48.7.1395.
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本文引用的文献

1
The disulfide-bonded loop of chromogranin B mediates membrane binding and directs sorting from the trans-Golgi network to secretory granules.嗜铬粒蛋白B的二硫键连接环介导膜结合,并指导从反式高尔基体网络到分泌颗粒的分选。
EMBO J. 1999 Feb 15;18(4):1059-70. doi: 10.1093/emboj/18.4.1059.
2
Induction of integral membrane PAM expression in AtT-20 cells alters the storage and trafficking of POMC and PC1.
J Cell Biol. 1999 Feb 8;144(3):459-71. doi: 10.1083/jcb.144.3.459.
3
Procollagen traverses the Golgi stack without leaving the lumen of cisternae: evidence for cisternal maturation.前胶原穿越高尔基体堆栈而不离开潴泡腔:潴泡成熟的证据。
Cell. 1998 Dec 23;95(7):993-1003. doi: 10.1016/s0092-8674(00)81723-7.
4
The curious status of the Golgi apparatus.高尔基体的奇特地位。
Cell. 1998 Dec 23;95(7):883-9. doi: 10.1016/s0092-8674(00)81713-4.
5
Protein and lipid sorting from the trans-Golgi network to secretory granules-recent developments.从反式高尔基体网络到分泌颗粒的蛋白质和脂质分选——最新进展
Semin Cell Dev Biol. 1998 Oct;9(5):511-6. doi: 10.1006/scdb.1998.0259.
6
Carboxypeptidase E, a peripheral membrane protein implicated in the targeting of hormones to secretory granules, co-aggregates with granule content proteins at acidic pH.羧肽酶E是一种参与将激素靶向分泌颗粒的外周膜蛋白,在酸性pH条件下与颗粒内容物蛋白共聚集。
J Biol Chem. 1998 Nov 20;273(47):31180-5. doi: 10.1074/jbc.273.47.31180.
7
Analysis of constitutive and constitutive-like secretion in semi-intact pituitary cells.半完整垂体细胞中组成型和类组成型分泌的分析。
Methods. 1998 Oct;16(2):188-97. doi: 10.1006/meth.1998.0666.
8
Biogenesis of secretory granules in the trans-Golgi network of neuroendocrine and endocrine cells.神经内分泌细胞和内分泌细胞反式高尔基体网络中分泌颗粒的生物发生
Biochim Biophys Acta. 1998 Aug 14;1404(1-2):231-44. doi: 10.1016/s0167-4889(98)00059-7.
9
Carboxypeptidase E is a sorting receptor for prohormones: binding and kinetic studies.羧肽酶E是一种激素原分拣受体:结合与动力学研究。
Mol Cell Endocrinol. 1998 Apr 30;139(1-2):7-13. doi: 10.1016/s0303-7207(98)00081-1.
10
Sorting and storage during secretory granule biogenesis: looking backward and looking forward.分泌颗粒生物发生过程中的分选与储存:回顾与展望
Biochem J. 1998 Jun 15;332 ( Pt 3)(Pt 3):593-610. doi: 10.1042/bj3320593.

胰岛素原的内切蛋白酶解作用可增强加工后的胰岛素靶向调节性分泌途径的能力。

Proinsulin endoproteolysis confers enhanced targeting of processed insulin to the regulated secretory pathway.

作者信息

Kuliawat R, Prabakaran D, Arvan P

机构信息

Division of Endocrinology, Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, Bronx, New York 10461, USA.

出版信息

Mol Biol Cell. 2000 Jun;11(6):1959-72. doi: 10.1091/mbc.11.6.1959.

DOI:10.1091/mbc.11.6.1959
PMID:10848622
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC14896/
Abstract

Recently, two different prohormone-processing enzymes, prohormone convertase 1 (PC1) and carboxypeptidase E, have been implicated in enhancing the storage of peptide hormones in endocrine secretory granules. It is important to know the extent to which such molecules may act as "sorting receptors" to allow the selective trafficking of cargo proteins from the trans-Golgi network into forming granules, versus acting as enzymes that may indirectly facilitate intraluminal storage of processed hormones within maturing granules. GH4C1 cells primarily store prolactin in granules; they lack PC1 and are defective for intragranular storage of transfected proinsulin. However, proinsulin readily enters the immature granules of these cells. Interestingly, GH4C1 clones that stably express modest levels of PC1 store more proinsulin-derived protein in granules. Even in the presence of PC1, a sizable portion of the proinsulin that enters granules goes unprocessed, and this portion largely escapes granule storage. Indeed, all of the increased granule storage can be accounted for by the modest portion converted to insulin. These results are not unique to GH4C1 cells; similar results are obtained upon PC1 expression in PC12 cells as well as in AtT20 cells (in which PC1 is expressed endogenously at higher levels). An in vitro assay of protein solubility indicates a difference in the biophysical behavior of proinsulin and insulin in the PC1 transfectants. We conclude that processing to insulin, facilitated by the catalytic activities of granule proteolytic enzymes, assists in the targeting (storage) of the hormone.

摘要

最近,两种不同的激素原加工酶,即激素原转化酶1(PC1)和羧肽酶E,被认为与增强肽类激素在内分泌分泌颗粒中的储存有关。重要的是要了解这些分子在多大程度上可能作为“分选受体”,使货物蛋白从反式高尔基体网络选择性地运输到正在形成的颗粒中,而不是作为可能间接促进成熟颗粒中加工后激素腔内储存的酶。GH4C1细胞主要将催乳素储存在颗粒中;它们缺乏PC1,并且转染的胰岛素原在颗粒内储存存在缺陷。然而,胰岛素原很容易进入这些细胞的未成熟颗粒。有趣的是,稳定表达适度水平PC1的GH4C1克隆在颗粒中储存更多的胰岛素原衍生蛋白。即使在存在PC1的情况下,进入颗粒的相当一部分胰岛素原仍未被加工,并且这部分很大程度上逃脱了颗粒储存。实际上,所有增加的颗粒储存都可以由转化为胰岛素的适度部分来解释。这些结果并非GH4C1细胞所特有;在PC12细胞以及AtT20细胞(其中PC1内源性表达水平较高)中表达PC1时也获得了类似的结果。蛋白质溶解度的体外测定表明PC1转染细胞中胰岛素原和胰岛素的生物物理行为存在差异。我们得出结论,在颗粒蛋白水解酶的催化活性促进下加工成胰岛素有助于激素的靶向(储存)。