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血管加压素是胰岛素调节氨肽酶IRAP的一种生理底物。

Vasopressin is a physiological substrate for the insulin-regulated aminopeptidase IRAP.

作者信息

Wallis Michelle G, Lankford Miles F, Keller Susanna R

机构信息

Division of Endocrinology, Department of Medicine, University of Virginia, Charlottesville, Virginia 22908, USA.

出版信息

Am J Physiol Endocrinol Metab. 2007 Oct;293(4):E1092-102. doi: 10.1152/ajpendo.00440.2007. Epub 2007 Aug 7.

Abstract

Insulin-regulated aminopeptidase (IRAP) is a membrane aminopeptidase and is homologous to the placental leucine aminopeptidase, P-LAP. IRAP has a wide distribution but has been best characterized in adipocytes and myocytes. In these cells, IRAP colocalizes with the glucose transporter GLUT4 to intracellular vesicles and, like GLUT4, translocates from these vesicles to the cell surface in response to insulin. Earlier studies demonstrated that purified IRAP cleaves several peptide hormones and that, concomitant with the appearance of IRAP at the surface of insulin-stimulated adipocytes, aminopeptidase activity toward extracellular substrates increases. In the present study, to identify in vivo substrates for IRAP, we tested potential substrates for cleavage by IRAP-deficient (IRAP(-/-)) and control mice. We found that vasopressin and oxytocin were not processed from the NH(2) terminus by isolated IRAP(-/-) adipocytes and skeletal muscles. Vasopressin was not cleaved from the NH(2) terminus after injection into IRAP(-/-) mice and exhibited a threefold increased half-life in the circulation of IRAP(-/-) mice. Consistent with this finding, endogenous plasma vasopressin levels were elevated twofold in IRAP(-/-) mice, and vasopressin levels in IRAP(-/-) brains, where plasma vasopressin originates, showed a compensatory decrease. We further established that insulin increased the clearance of vasopressin from control but not from IRAP(-/-) mice. In conclusion, we have identified vasopressin as the first physiological substrate for IRAP. Changes in plasma and brain vasopressin levels in IRAP(-/-) mice suggest a significant role for IRAP in regulating vasopressin. We have also uncovered a novel IRAP-dependent insulin effect: to acutely modify vasopressin.

摘要

胰岛素调节氨肽酶(IRAP)是一种膜氨肽酶,与胎盘亮氨酸氨肽酶P-LAP同源。IRAP分布广泛,但在脂肪细胞和肌细胞中研究得最为深入。在这些细胞中,IRAP与葡萄糖转运蛋白GLUT4共定位于细胞内囊泡,并且与GLUT4一样,在胰岛素作用下从这些囊泡转运至细胞表面。早期研究表明,纯化的IRAP可切割多种肽类激素,并发现随着IRAP在胰岛素刺激的脂肪细胞表面出现,对细胞外底物的氨肽酶活性增加。在本研究中,为了鉴定IRAP在体内的底物,我们用IRAP缺陷型(IRAP(-/-))小鼠和对照小鼠测试了潜在的可被IRAP切割的底物。我们发现,分离的IRAP(-/-)脂肪细胞和骨骼肌不能从氨基末端加工血管加压素和催产素。将血管加压素注射到IRAP(-/-)小鼠体内后,其氨基末端未被切割,并且在IRAP(-/-)小鼠的循环中半衰期增加了三倍。与此发现一致,IRAP(-/-)小鼠内源性血浆血管加压素水平升高了两倍,而血浆血管加压素来源的IRAP(-/-)小鼠脑内血管加压素水平出现代偿性降低。我们进一步证实,胰岛素可增加对照小鼠而非IRAP(-/-)小鼠体内血管加压素的清除率。总之,我们已确定血管加压素是IRAP的首个生理底物。IRAP(-/-)小鼠血浆和脑内血管加压素水平的变化表明IRAP在调节血管加压素方面具有重要作用。我们还发现了一种新的依赖IRAP的胰岛素效应:急性调节血管加压素。

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