Bundgaard J R, Cowland J B, Vuust J, Rehfeld J F
Department of Clinical Biochemistry, Rigshospitalet, University of Copenhagen, Denmark.
DNA Cell Biol. 1996 Feb;15(2):147-57. doi: 10.1089/dna.1996.15.147.
A novel system for heterologous expression of prohormones based on transient transfection of the HIT beta-cell line was established using human progastrin as a model. Progastrin was expressed at high levels compared to other gene transfer systems in endocrine cells, and the processing pattern was similar to that of normal antral gastrin cells. Thus, gastrin was partially tyrosine O-sulfated and carboxyamidated. Cell extracts contained mainly gastrin-17 and gastrin-34 and the corresponding glycine-extended forms. In contrast, the media contained more incompletely processed gastrin forms. This suggests that gastrin was directed to the regulated secretory pathway but that some progastrin products were constitutively secreted. Glucose increased both the level of gastrin gene expression and maturation to carboxyamidated peptides, indicating that glucose influences the activity of the amidation enzyme complex, peptidylglycine alpha-amidating mono-oxygenase (PAM), in insulin cells. Mutational analysis of tyrosine sulfation of gastrin demonstrated that substitution of the uncharged residue carboxy-terminal to the tyrosine with an acidic residue does not increase sulfation in contrast to previous results, where the amino-terminal residue was replaced with an acidic residue. The mutant peptides displayed sulfation-dependent processing, supporting our recent suggestion that tyrosine sulfation increases the proteolytic processing of prohormones.
以人胃泌素原作为模型,建立了一种基于HIT β细胞系瞬时转染的激素原异源表达新系统。与内分泌细胞中的其他基因转移系统相比,胃泌素原的表达水平较高,且加工模式与正常胃窦胃泌素细胞相似。因此,胃泌素部分发生了酪氨酸O - 硫酸化和羧基酰胺化。细胞提取物主要包含胃泌素 - 17和胃泌素 - 34以及相应的甘氨酸延伸形式。相比之下,培养基中含有更多加工不完全的胃泌素形式。这表明胃泌素被导向调节性分泌途径,但一些胃泌素原产物是组成性分泌的。葡萄糖增加了胃泌素基因表达水平以及向羧基酰胺化肽的成熟度,表明葡萄糖影响胰岛素细胞中酰胺化酶复合物——肽基甘氨酸α - 酰胺化单加氧酶(PAM)的活性。胃泌素酪氨酸硫酸化的突变分析表明,与之前将氨基末端残基替换为酸性残基的结果相反,将酪氨酸羧基末端的不带电荷残基替换为酸性残基并不会增加硫酸化。突变肽显示出硫酸化依赖性加工,支持了我们最近提出的酪氨酸硫酸化增加激素原蛋白水解加工的观点。