Riby J E, Kretchmer N
J Pediatr Gastroenterol Nutr. 1985 Dec;4(6):971-9. doi: 10.1097/00005176-198512000-00020.
The pancreatic ducts of the rats were bypassed with a catheter placed within the common bile duct to prevent the entry of pancreatic enzymes into the duodenum without interrupting bile flow. For 8 days, the animals were fed a diet (peptones, sucrose, coconut oil, vitamins, and minerals) that could be digested without pancreatic enzymes. Control animals were sham operated and pair-fed with the same diet. Relative rates of synthesis and degradation were estimated by pulse labeling and double labeling, respectively, for sucrase and for total protein, in intestinal mucosa and along the gradient of cells collected from the tip of the villus to the bottom of the crypt. The rate of degradation of sucrase was 1.7 times greater than that of total protein in controls, whereas in animals with the pancreatic bypass it was equal to that of total protein. This decrease in rate of degradation produced a proportional increase of activity of sucrase in experimental animals. The hydrolytic effect of pancreatic enzymes on sucrase was apparent along the entire length of the villus but not in the crypt. These data support the hypothesis that pancreatic proteases release sucrase-isomaltase from the brush border membrane, resulting in the observed increase of the rate of degradation. Electrophoretic separation of immunoprecipitated sucrase-isomaltase showed that the intact pro-sucrase-isomaltase observed in operated animals is split into two subunits (sucrase and isomaltase) by action of pancreatic proteases in control animals.
将导管置于大鼠胆总管内,使胰管旁路,以防止胰酶进入十二指肠,同时不中断胆汁流动。连续8天,给这些动物喂食一种(由蛋白胨、蔗糖、椰子油、维生素和矿物质组成的)无需胰酶就能消化的饮食。对照动物接受假手术,并与实验组喂食相同的饮食。分别通过脉冲标记和双重标记来估计蔗糖酶和总蛋白在肠黏膜以及从绒毛顶端到隐窝底部收集的细胞梯度中的合成和降解相对速率。在对照组中,蔗糖酶的降解速率比总蛋白的降解速率高1.7倍,而在胰管旁路的动物中,蔗糖酶的降解速率与总蛋白的降解速率相等。降解速率的这种降低使得实验动物中蔗糖酶的活性成比例增加。胰酶对蔗糖酶的水解作用在绒毛全长都很明显,但在隐窝中不明显。这些数据支持了以下假说:胰腺蛋白酶从刷状缘膜释放蔗糖酶 - 异麦芽糖酶,导致观察到的降解速率增加。对免疫沉淀的蔗糖酶 - 异麦芽糖酶进行电泳分离显示,在手术动物中观察到的完整的前体蔗糖酶 - 异麦芽糖酶在对照动物中被胰腺蛋白酶作用分解为两个亚基(蔗糖酶和异麦芽糖酶)。