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猫和狗体内的胃泌素:胃泌素大分子形式与十七肽胃泌素之间生物合成关系的证据。

Gastrins in cat and dog: evidence for a biosynthetic relationship between the large molecular forms of gastrin and heptadecapeptide gastrin.

作者信息

Rehfield J F, Uvnäs-Wallensten K

出版信息

J Physiol. 1978 Oct;283:379-96. doi: 10.1113/jphysiol.1978.sp012507.

Abstract
  1. Extracts of antral, duodenal and jejunal mucosa contained the same concentrations and molecular forms of gastrin in cat and dog. In both species component III constituted 93%, component II 4% and components I and IV each 1% of the total immunoreactivity. 2. During electrical vagal stimulation or feeding in (a) anaesthetized cats with ligated kidney vessels and resected jejunum and ileum, (b) anaesthetized normal cats or (c) conscious normal cats, release of the large molecular forms of gastrin, components I and II, was not detectable. 3. Luminal perfusates of cat antrum contained only component III and occasionally less than 2% of component IV. 4. Intravenous injections into conscious cats of components I, II and III isolated from cat antrum revealed a significantly slower elimination of the large components (t1/2 approximately 4.2 and 4.0 min respectively) than of component III (t1/2 approximately 1.1 min). Thus the absence of components I and II in cat blood cannot be due to rapid degradation. 5. During feeding, components I and II constituted 20% of the total gastrin immunoreactivity in antral venous blood of dogs. This amount is sufficient to account for the predominance of large components in peripheral venous blood in dogs considering their slow metabolic clearance rates. 6. Luminal perfusates of dog antrum contained components I, II and III in proportions corresponding to those found in antrum. 7. The results indicate that components I and II are synthesized in the same proportions in gastrin cells of cat and dog. In the cat, components I and II are, however, never released from the cells. Since these components contain heptadecapeptide gastrin within their sequeaces, they probably represent biosynthetic precursors of the principal gastrin, the heptadecapeptide (component III). The predominance of component III in gastric juice suggests that the feline gastrin cell secretes only component III, which degrades to component IV in blood.
摘要
  1. 猫和狗的胃窦、十二指肠和空肠黏膜提取物中胃泌素的浓度和分子形式相同。在这两个物种中,组分III占总免疫反应性的93%,组分II占4%,组分I和IV各占1%。2. 在以下情况下进行电迷走神经刺激或喂食时:(a) 肾血管结扎且空肠和回肠切除的麻醉猫,(b) 麻醉的正常猫,或(c) 清醒的正常猫,未检测到胃泌素大分子形式(组分I和II)的释放。3. 猫胃窦的腔内灌流液仅含组分III,偶尔含低于2%的组分IV。4. 给清醒猫静脉注射从猫胃窦分离出的组分I、II和III,结果显示大分子组分(半衰期分别约为4.2分钟和4.0分钟)的消除速度明显慢于组分III(半衰期约为1.1分钟)。因此,猫血液中不存在组分I和II并非由于快速降解。5. 喂食期间,狗胃窦静脉血中组分I和II占胃泌素总免疫反应性的20%。考虑到它们缓慢的代谢清除率,这一数量足以解释狗外周静脉血中大分子组分占优势的现象。6. 狗胃窦的腔内灌流液中组分I、II和III的比例与胃窦中发现的比例相对应。7. 结果表明,猫和狗的胃泌素细胞中组分I和II的合成比例相同。然而,在猫中,组分I和II从未从细胞中释放出来。由于这些组分的序列中含有十七肽胃泌素,它们可能代表主要胃泌素即十七肽(组分III)的生物合成前体。胃液中组分III占优势表明猫胃泌素细胞仅分泌组分III,其在血液中降解为组分IV。

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