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促肾上腺皮质激素释放激素:AtT20细胞内其衍生肽的内切蛋白水解加工及差异释放

Procorticotrophin-releasing hormone: endoproteolytic processing and differential release of its derived peptides within AtT20 cells.

作者信息

Perone M J, Murray C A, Brown O A, Gibson S, White A, Linton E A, Perkins A V, Lowenstein P R, Castro M G

机构信息

Department of Medicine, University of Manchester, UK.

出版信息

Mol Cell Endocrinol. 1998 Jul 25;142(1-2):191-202. doi: 10.1016/s0303-7207(98)00104-x.

Abstract

Procorticotrophin-releasing hormone (proCRH) is expressed mainly in the hypothalamus and in the placenta, where it undergoes tissue-specific endoproteolysis. Our results show that within stably transfected AtT20/D16V cells proCRH is cleaved to generate two fragments of approximately 8 and 3 kDa which could account for proCRH(125-194) and proCRH(125-151), respectively, and a 4.5 kDa product which could account for mature IR-CRH(1-41). The immunofluorescence staining patterns for IR-CRH and IR-ACTH and their response of secretagogues indicate targeting of proCRH and POMC to the secretory pathway in transfected AtT20 cells. In this work, we have used a unique set of specific RIAs and IRMAs to the full length POMC and proCRH molecules and several products of endoproteolytic processing to assess if they could be released differentially in response to stimulation. Although the release of both IR-ACTH and IR-CRH peptides from transfected AtT20 cells is stimulated in response to exposure to high potassium stimulation (51 mM KCl/SmM CaCl2), the sorting index (SI) suggests that mature ACTH is sorted to the regulated secretory pathway 2.1-fold more efficiently than mature CRH(1-41). Mature ACTH is also sorted to the regulated secretory pathway 9-fold more efficiently than IR-proCRH(125-151). Also, mature CRH(1-41) is sorted to the regulated secretory pathway 3-fold more efficiently than IR-proCRH(125-151). These results therefore indicate that the intracellular mechanisms for the storage and release of POMC, proCRH and their endoproteolytic products differ and would sustain the hypothesis that within mammalian peptidergic cells, different biologically active peptides originating from the same or different precursor molecules, could be differentially released in response to specific stimuli. This would give these cells the capacity to finely regulate neurotransmitter release in response to environmental and physiological demands.

摘要

促肾上腺皮质激素释放激素(proCRH)主要在下丘脑和胎盘中表达,在那里它会经历组织特异性的内切蛋白水解作用。我们的结果表明,在稳定转染的AtT20/D16V细胞中,proCRH被切割产生两个片段,分别约为8 kDa和3 kDa,可能分别对应proCRH(125 - 194)和proCRH(125 - 151),以及一个4.5 kDa的产物,可能对应成熟的IR - CRH(1 - 41)。IR - CRH和IR - ACTH的免疫荧光染色模式及其对促分泌剂的反应表明,proCRH和POMC在转染的AtT20细胞中靶向分泌途径。在这项工作中,我们使用了一组独特的针对全长POMC和proCRH分子以及几种内切蛋白水解加工产物的特异性放射免疫分析(RIA)和免疫放射分析(IRMA),以评估它们是否能在刺激下差异释放。尽管转染的AtT20细胞中IR - ACTH和IR - CRH肽的释放都受到高钾刺激(51 mM KCl/5 mM CaCl2)的刺激,但分选指数(SI)表明,成熟的ACTH被分选到调节性分泌途径的效率比成熟的CRH(1 - 41)高2.1倍。成熟的ACTH被分选到调节性分泌途径的效率也比IR - proCRH(125 - 151)高9倍。此外,成熟的CRH(1 - 41)被分选到调节性分泌途径的效率比IR - proCRH(125 - 151)高3倍。因此,这些结果表明,POMC、proCRH及其内切蛋白水解产物的细胞内储存和释放机制不同,这支持了这样一种假设,即在哺乳动物肽能细胞内,源自相同或不同前体分子的不同生物活性肽可以在特定刺激下差异释放。这将使这些细胞有能力根据环境和生理需求精细调节神经递质的释放。

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