Rehfeld Jens F, Zhu Xiaorong, Norrbom Christina, Bundgaard Jens R, Johnsen Anders H, Nielsen John E, Vikesaa Jonas, Stein Jeffrey, Dey Arunangsu, Steiner Donald F, Friis-Hansen Lennart
Department of Clinical Biochemistry, Rigshospitalet, University of Copenhagen, Copenhagen, Denmark.
Biochem J. 2008 Oct 1;415(1):35-43. doi: 10.1042/BJ20080881.
Cellular synthesis of peptide hormones requires PCs (prohormone convertases) for the endoproteolysis of prohormones. Antral G-cells synthesize the most gastrin and express PC1/3, 2 and 5/6 in the rat and human. But the cleavage sites in progastrin for each PC have not been determined. Therefore, in the present study, we measured the concentrations of progastrin, processing intermediates and alpha-amidated gastrins in antral extracts from PC1/3-null mice and compared the results with those in mice lacking PC2 and wild-type controls. The expression of PCs was examined by immunocytochemistry and in situ hybridization of mouse G-cells. Finally, the in vitro effect of recombinant PC5/6 on progastrin and progastrin fragments containing the relevant dibasic cleavage sites was also examined. The results showed that mouse G-cells express PC1/3, 2 and 5/6. The concentration of progastrin in PC1/3-null mice was elevated 3-fold. Chromatography showed that cleavage of the Arg(36)Arg(37) and Arg(73)Arg(74) sites were grossly decreased. Accordingly, the concentrations of progastrin products were markedly reduced, alpha-amidated gastrins (-34 and -17) being 25% of normal. Lack of PC1/3 was without effect on the third dibasic site (Lys(53)Lys(54)), which is the only processing site for PC2. Recombinant PC5/6 did not cleave any of the dibasic processing sites in progastrin and fragments containing the relevant dibasic processing sites. The complementary cleavages of PC1/3 and 2, however, suffice to explain most of the normal endoproteolysis of progastrin. Moreover, the results show that PCs react differently to the same dibasic sequences, suggesting that additional structural factors modulate the substrate specificity.
肽类激素的细胞合成需要激素原转化酶(PCs)对激素原进行内切蛋白水解。胃窦G细胞合成的胃泌素最多,在大鼠和人类中表达PC1/3、2和5/6。但每种PC在胃泌素原上的切割位点尚未确定。因此,在本研究中,我们测量了PC1/3基因敲除小鼠胃窦提取物中胃泌素原、加工中间体和α-酰胺化胃泌素的浓度,并将结果与缺乏PC2的小鼠和野生型对照进行比较。通过免疫细胞化学和小鼠G细胞的原位杂交检测PCs的表达。最后,还检测了重组PC5/6对胃泌素原和含有相关双碱性切割位点的胃泌素原片段的体外作用。结果显示,小鼠G细胞表达PC1/3、2和5/6。PC1/3基因敲除小鼠中胃泌素原的浓度升高了3倍。色谱分析表明,Arg(36)Arg(37)和Arg(73)Arg(74)位点的切割明显减少。相应地,胃泌素原产物的浓度显著降低,α-酰胺化胃泌素(-