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稳定胰腺酶原颗粒的分离

Isolation of stable pancreatic zymogen granules.

作者信息

De Lisle R C, Schulz I, Tyrakowski T, Haase W, Hopfer U

出版信息

Am J Physiol. 1984 Apr;246(4 Pt 1):G411-8. doi: 10.1152/ajpgi.1984.246.4.G411.

DOI:10.1152/ajpgi.1984.246.4.G411
PMID:6609646
Abstract

Isolated pancreatic zymogen granules have been reported to lyse in common electrolyte solutions such as NaCl or KCl or at pH values above 5.5. A new method, based on an isosmotic Percoll density gradient, was developed for the isolation of zymogen granules and applied to rat pancreas. The granules are highly purified as judged by electron microscopic appearance and specific amylase activity. These granules exhibit a high degree of stability at physiological pH and in isotonic NaCl or KCl. Zymogen granule diameters, determined with a Coulter Counter, were 1.0 +/- 0.2 micron in either isotonic NaCl and KCl. These size values, obtained in physiological solutions, are comparable with granule sizes determined in intact cells by microscopy. Amylase activity averaged 0.66 microU per granule and protein content averaged 0.31 pg per granule; these values were not significantly influenced by different conditions of pH between 5.5 and 7.0 and ionic strength from near 0 to 0.15. The granule density estimated from the protein content was 1.13 g/ml, which agrees well with the behavior of granules in a density gradient. The properties of zymogen granules from the new preparation rectify the apparent discrepancy between their role as a storage organelle and their previously reported in vitro instability.

摘要

据报道,分离出的胰腺酶原颗粒在诸如氯化钠或氯化钾等常见电解质溶液中或在pH值高于5.5时会溶解。基于等渗Percoll密度梯度开发了一种用于分离酶原颗粒的新方法,并将其应用于大鼠胰腺。从电子显微镜外观和特定淀粉酶活性判断,这些颗粒高度纯化。这些颗粒在生理pH值以及等渗氯化钠或氯化钾中表现出高度稳定性。用库尔特计数器测定,在等渗氯化钠和氯化钾中酶原颗粒直径均为1.0±0.2微米。在生理溶液中获得的这些尺寸值与通过显微镜在完整细胞中测定的颗粒尺寸相当。每个颗粒的淀粉酶活性平均为0.66微单位,蛋白质含量平均为每个颗粒0.31皮克;在pH值介于5.5和7.0之间以及离子强度从接近0到0.15的不同条件下,这些值均未受到显著影响。根据蛋白质含量估算的颗粒密度为1.13克/毫升,这与颗粒在密度梯度中的行为非常吻合。新制备的酶原颗粒的特性纠正了其作为储存细胞器的作用与其先前报道的体外不稳定性之间明显的差异。

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