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人和大鼠尿液中蛋白水解系统的特征分析。

Characterization of proteolytic systems in human and rat urine.

作者信息

Wormser U, Zbinden G

出版信息

Biochem Biophys Res Commun. 1985 Feb 28;127(1):191-7. doi: 10.1016/s0006-291x(85)80143-1.

Abstract

Activities of proteolytic enzymes were detected in rat and human urine by using [125 l] iodo-insulin B chain as a substrate. The pH optimum of human urine activity was in the acidic range (pH 2.0) whereas the rat urine had two pH optima, one at the acidic range similar to human urine and another at pH 7.5. The activities were linear with time and amount of enzyme. Study with various proteinase inhibitors revealed that the acidic pH activities of human and rat urine were apparently of carboxyl endopeptidases since they were totally inhibited by pepstatin 10-8M. The neutral pH proteolysis of rat urine was inhibited by chelating agents and therefore it was considered as a metalloendopeptidase activity. These findings show the difference between the content of urinary proteolytic enzymes in humans and in rats by using a sensitive and simple radioactive assay.

摘要

以[125I]碘胰岛素B链为底物,检测了大鼠和人类尿液中蛋白水解酶的活性。人类尿液活性的最适pH在酸性范围内(pH 2.0),而大鼠尿液有两个最适pH,一个在与人类尿液相似的酸性范围内,另一个在pH 7.5。活性与时间和酶量呈线性关系。对各种蛋白酶抑制剂的研究表明,人类和大鼠尿液的酸性pH活性显然是羧基肽酶,因为它们被10-8M的胃蛋白酶抑制剂完全抑制。大鼠尿液的中性pH蛋白水解被螯合剂抑制,因此被认为是金属内肽酶活性。这些发现通过一种灵敏且简单的放射性检测方法显示了人类和大鼠尿液中蛋白水解酶含量的差异。

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