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首页> 外文期刊>Pancreas >Guanidino group is involved in the stimulation of exocrine pancreatic secretion by protamine in normal and chronic bile-pancreatic juice-diverted rats.
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Guanidino group is involved in the stimulation of exocrine pancreatic secretion by protamine in normal and chronic bile-pancreatic juice-diverted rats.

机译:鸟嘌呤组参与鱼精蛋白和正常胆汁-胰腺-汁液转移大鼠中鱼精蛋白对外分泌胰腺分泌的刺激。

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摘要

We previously demonstrated that the feeding of guanidinated casein, whose lysine residues are converted to homoarginine, stimulates pancreatic secretion much higher than that of intact casein in chronic bile-pancreatic juice (BPJ)-diverted rats, which suggests that the guanidino group is involved in BPJ-independent enhancement of pancreatic secretion. However, the role of the guanidino group in the protein for the enhancement of pancreatic secretion has not been clarified. In this study, we examined the stimulation of pancreatic secretion by a arginine rich dietary protein, protamine (25, 50 mg/ml), and then determined whether the guanidino group in protamine was responsible for the secretory responses in normal and BPJ-diverted rat by comparison with pancreatic secretion between intact and deguanidinated protamine. The deguanidinated protamine was prepared by converting arginine residues of salmon protamine to ornithine using heated hydrazine (conversion rate of arginine residue was 87%). In normal rats, pancreatic protein and chymotrypsin secretion were stimulated in dose-response fashion after a duodenal instillation of native protamine solution (25, 50 mg in 1 ml). In chronic BPJ-diverted rats, native protamine (25 mg) maximally stimulated pancreatic protein and protease secretion. In contrast, deguanidinated protamine (50 mg in 1 ml) did not stimulate pancreatic secretion in both normal and BPJ-diverted rats. In addition, the duodenal administration of arginine, which is equal to the amount contained in 50 mg of native protamine, had no effect on pancreatic secretion in both rats. These results suggest that a naturally occurring protein, protamine, stimulates pancreatic secretion by a luminal BPJ-independent mechanism and that the guanidino group in this protein is responsible for stimulating pancreatic secretion in BPJ-diverted rats.
机译:我们先前证明,饲喂赖氨酸残基被转化为高精氨酸的鸟嘌呤化酪蛋白,其对胰腺分泌的刺激作用要比完整胆汁-胰液(BPJ)转移大鼠的完整酪蛋白要高得多,这表明胍基参与了该过程。 BPJ独立的胰腺分泌增强。然而,尚未阐明胍基基团在蛋白质中用于增强胰腺分泌的作用。在这项研究中,我们检查了富含精氨酸的饮食蛋白鱼精蛋白(25、50 mg / ml)对胰腺分泌的刺激作用,然后确定鱼精蛋白中的鸟嘌呤基团是否负责正常和BPJ转移大鼠的分泌反应与完整和去胍基的鱼精蛋白之间的胰腺分泌相比。通过使用加热的肼将鲑鱼鱼精蛋白的精氨酸残基转化为鸟氨酸来制备脱胍基鱼精蛋白(精氨酸残基的转化率为87%)。在正常大鼠中,十二指肠滴注天然鱼精蛋白溶液(25 ml,50 mg,1 ml)后,以剂量反应的方式刺激了胰腺蛋白和胰凝乳蛋白酶的分泌。在慢性BPJ转移的大鼠中,天然鱼精蛋白(25 mg)最大程度地刺激了胰腺蛋白和蛋白酶的分泌。相比之下,去胍基化鱼精蛋白(1 ml中为50 mg)在正常和BPJ转移的大鼠中均未刺激胰腺分泌。另外,精氨酸的十二指肠给药等于50 mg天然鱼精蛋白中所含的量,对两只大鼠的胰腺分泌均无影响。这些结果表明,天然存在的蛋白质鱼精蛋白通过不依赖腔BPJ的机制刺激胰腺分泌,并且该蛋白质中的胍基基团负责刺激BPJ转移大鼠的胰腺分泌。

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