Zhu Xiaorong, Orci Lelio, Carroll Raymond, Norrbom Christina, Ravazzola Mariella, Steiner Donald F
Department of Biochemistry and Molecular Biology and Howard Hughes Medical Institute, University of Chicago, Chicago, IL 60637, USA.
Proc Natl Acad Sci U S A. 2002 Aug 6;99(16):10299-304. doi: 10.1073/pnas.162352799. Epub 2002 Jul 22.
The neuroendocrine processing endoproteases PC2 and PC1/3 are expressed in the beta cells of the islets of Langerhans and participate in the processing of proinsulin to insulin and C-peptide. We have previously shown that disruption of PC2 (SPC2) expression significantly impairs proinsulin processing. Here we report that disruption of the expression of PC1/3 (SPC3) produces a much more severe block in proinsulin conversion. In nulls, pancreatic and circulating proinsulin-like components comprise 87% and 91%, respectively, of total insulin-related immunoreactivity. Heterozygotes also show a more than 2-fold elevation in proinsulin levels to approximately 12%. Immunocytochemical and ultrastructural studies of the beta cells reveal the nearly complete absence of mature insulin immunoreactivity and its replacement by that of proinsulin in abundant immature-appearing secretory granules. In contrast, alpha cell morphology and glucagon processing are normal, and there is also no defect in somatostatin-14 generation. Pulse-chase labeling studies confirm the existence of a major block in proinsulin processing in PC1/3 nulls with prolongation of half-times of conversion by 7- and 10-fold for proinsulins I and II, respectively. Lack of PC1/3 also results in increased levels of des-64,65 proinsulin intermediates generated by PC2, in contrast to PC2 nulls, in which des- 31,32 proinsulin intermediates predominate. These results confirm that PC1/3 plays a major role in processing proinsulin, but that its coordinated action with PC2 is necessary for the most efficient and complete processing of this prohormone.
神经内分泌加工内肽酶PC2和PC1/3在胰岛β细胞中表达,并参与胰岛素原加工成胰岛素和C肽的过程。我们之前已经表明,PC2(SPC2)表达的破坏会显著损害胰岛素原加工。在此我们报告,PC1/3(SPC3)表达的破坏在胰岛素原转化过程中产生了更为严重的阻断。在基因敲除小鼠中,胰腺和循环中的胰岛素原样成分分别占总胰岛素相关免疫反应性的87%和91%。杂合子的胰岛素原水平也升高了2倍多,达到约12%。对β细胞的免疫细胞化学和超微结构研究显示,成熟胰岛素免疫反应性几乎完全缺失,取而代之的是大量外观不成熟的分泌颗粒中的胰岛素原免疫反应性。相比之下,α细胞形态和胰高血糖素加工正常,生长抑素-14的产生也没有缺陷。脉冲追踪标记研究证实,在PC1/3基因敲除小鼠中,胰岛素原加工存在主要阻断,胰岛素原I和II的转化半衰期分别延长了7倍和10倍。与PC2基因敲除小鼠不同,PC2基因敲除小鼠中主要是去31,32胰岛素原中间体,而缺乏PC1/3还导致PC2产生的去64,65胰岛素原中间体水平升高。这些结果证实,PC1/3在胰岛素原加工中起主要作用,但它与PC2的协同作用对于这种激素原的最有效和完全加工是必要的。