首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Isolated secretion granules from parotid glands of chronically stimulated rats possess an alkaline internal pH and inward-directed H+ pump activity
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Isolated secretion granules from parotid glands of chronically stimulated rats possess an alkaline internal pH and inward-directed H+ pump activity

机译:慢性刺激大鼠腮腺的分离分泌颗粒具有碱性内部pH值和向内定向的H +泵活性

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摘要

Secretion granules have been isolated from the parotid glands of rats that have been chronically stimulated with the beta-adrenergic agonist, isoproterenol. These granules are of interest because they package a quantitatively different set of secretory proteins in comparison with granules from the normal gland. Polypeptides enriched in proline, glycine, and glutamine, which are known to have pI's greater than 10, replace alpha-amylase (pI's = 6.8) as the principal content species. The internal pH of granules from the treated rats ranges from 7.8 in a potassium sulfate medium to 6.9 in a choline chloride medium. The increased pH over that of normal parotid granules (approximately 6.8) appears to reflect the change in composition of the secretory content. Whereas normal mature parotid granules have practically negligible levels of H+ pumping ATPase activity (Arvan, P., G. Rudnick, and J. D. Castle, 1985, J. Biol. Chem., 260, 14945-14952) the isolated granules from isoproterenol-treated rats undergo a time-dependent internal acidification (approximately 0.2 pH unit) that requires the presence of ATP and is abolished by an H+ ionophore. Additionally, an inside- positive granule transmembrane potential develops after ATP addition that depends upon ATP hydrolysis. Two independent methods have been used that exclude the possibility that contaminating organelles are the source of the H+-ATPase activity. Together these data provide clear evidence for the presence of an H+ pump in the membranes of parotid granules from chronically stimulated rats. However, despite the presence of H+-pump activity, fluorescence microscopy with the weak base, acridine orange, reveals that the intragranular pH in live cells is greater than that of the cytoplasm.
机译:已经从大鼠的腮腺中分离出了分泌颗粒,这些大鼠用β-肾上腺素能激动剂异丙肾上腺素长期刺激。这些颗粒是令人感兴趣的,因为与来自正常腺体的颗粒相比,它们包装了数量不同的一组分泌蛋白。富含脯氨酸,甘氨酸和谷氨酰胺的多肽(已知pI大于10)取代了α-淀粉酶(pI = 6.8)作为主要含量物质。来自处理过的大鼠的颗粒的内部pH在硫酸钾培养基中为7.8至在氯化胆碱培养基中为6.9。与正常腮腺颗粒(约6.8)相比,pH升高似乎反映了分泌成分组成的变化。正常成熟的腮腺颗粒的H +泵ATPase活性几乎可以忽略不计(Arvan,P.,G.Rudnick和JD Castle,1985,J.Biol.Chem。,260,14945-14952),经异丙肾上腺素处理的分离的颗粒大鼠经历时间依赖性的内部酸化(约0.2个pH单位),这需要存在ATP并被H +离子载体消除。另外,依赖于ATP水解,在添加ATP之后产生内部阳性颗粒跨膜电位。已经使用两种独立的方法来排除污染细胞器是H + -ATPase活性来源的可能性。这些数据一起提供了明确证据,证明来自慢性刺激大鼠腮腺颗粒膜中存在H +泵。然而,尽管存在H +泵浦活性,弱碱base啶橙的荧光显微镜显示活细胞中的颗粒内pH大于细胞质。

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