Darmoul D, Baricault L, Sapin C, Chantret I, Trugnan G, Rousset M
Unité de Recherches sur la différenciation cellulaire intestinale, Institut National de la Santé et de la Recherche Médicale, U178, Villejuif, France.
Experientia. 1991 Dec 1;47(11-12):1211-5. doi: 10.1007/BF01918387.
Treatment for 48 h of differentiated, confluent Caco-2 cells with 2.5 10(-5) M forskolin or 10(-6) M monensin, which produces a significant decrease of the de novo biosynthesis of sucrase-isomaltase, does not change quantitatively the de novo biosynthesis of dipeptidylpeptidase IV. Western blot analysis and silver nitrate staining indicate that neither drug induces any modification in the steady state expression of these two brush border hydrolases. Northern blot analysis shows that the level of dipeptidylpeptidase IV mRNA does not change in treated as compared to control Caco-2 cells. In contrast, forskolin and monensin dramatically decrease the level of sucrase-isomaltase mRNA. These observations suggest a separate regulation of biosynthesis for sucrase-isomaltase and dipeptidylpeptidase IV in intestinal cells. The mechanisms responsible for such a difference are discussed. Among them, the role of glucose metabolism, which is perturbed by both drugs, appears to be of crucial importance.
用2.5×10⁻⁵ M福斯高林或10⁻⁶ M莫能菌素处理分化且汇合的Caco-2细胞48小时,这会导致蔗糖酶 - 异麦芽糖酶的从头生物合成显著减少,但二肽基肽酶IV的从头生物合成在数量上没有变化。蛋白质免疫印迹分析和硝酸银染色表明,这两种药物均未诱导这两种刷状缘水解酶的稳态表达发生任何改变。Northern印迹分析显示,与对照Caco-2细胞相比,处理后的二肽基肽酶IV mRNA水平没有变化。相反,福斯高林和莫能菌素显著降低了蔗糖酶 - 异麦芽糖酶mRNA的水平。这些观察结果表明,肠道细胞中蔗糖酶 - 异麦芽糖酶和二肽基肽酶IV的生物合成受到单独调控。文中讨论了造成这种差异的机制。其中,受这两种药物干扰的葡萄糖代谢的作用似乎至关重要。