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大鼠牙髓中激肽酶的特性

Properties of kininase in rat dental pulp.

作者信息

Maita E, Endo Y, Ogura Y

出版信息

J Dent Res. 1984 Aug;63(8):1067-71. doi: 10.1177/00220345840630081201.

Abstract

A kininase, capable of degrading bradykinin, was partially purified from the dental pulp of rats, and its properties were investigated. Chromatography on both Sephadex G-200 and DEAE Sephadex A-50 columns gave a single peak of kininase activity. The molecular weight of the enzyme, estimated by gel filtration, was about 67,000, and the optimum pH for the enzymatic reaction was about 7.5. The enzyme appears to contain a labile SH group(s) that is essential for its activity, because CdCl2, HgCl2 (0.1 mM each), and p-chloromercuric benzoate (0.05 mM) inhibited the enzyme completely, while dithiothreitol retarded the loss of activity during storage. Of various peptides tested, bradykinin was the substrate most sensitive for the enzyme. The enzyme released several amino acids located in the C-terminal regions of bradykinin--angiotensin I and neurotensin--but only one C-terminal amino acid from des-Arg9--bradykinin and angiotensin II. In contrast, the enzyme did not release any amino acids from substance P, of which only the two amino acids in the N-terminal region are the same as those of bradykinin, but its C-terminal is blocked by an amino group. Although the enzyme was not so highly purified as to rule out the contribution of other peptidases, these results suggest that the dental pulp of rats may contain a single enzyme that degrades bradykinin, and the enzyme may be a type of carboxypeptidase, differing from known kininases from other animal sources.

摘要

从大鼠牙髓中部分纯化出一种能够降解缓激肽的激肽酶,并对其性质进行了研究。在葡聚糖凝胶G - 200和二乙氨基乙基葡聚糖A - 50柱上进行色谱分析均得到一个激肽酶活性单峰。通过凝胶过滤估计该酶的分子量约为67,000,酶促反应的最适pH约为7.5。该酶似乎含有一个对其活性至关重要的不稳定巯基,因为氯化镉、氯化汞(各0.1 mM)和对氯汞苯甲酸(0.05 mM)能完全抑制该酶,而二硫苏糖醇能延缓储存过程中的活性丧失。在测试的各种肽中,缓激肽是对该酶最敏感的底物。该酶能从缓激肽 - 血管紧张素I和神经降压素的C末端区域释放几个氨基酸,但从去 - 精氨酸9 - 缓激肽和血管紧张素II中仅释放一个C末端氨基酸。相比之下,该酶从P物质中不释放任何氨基酸,P物质只有N末端区域的两个氨基酸与缓激肽相同,但其C末端被一个氨基封闭。尽管该酶的纯化程度不高,无法排除其他肽酶的作用,但这些结果表明大鼠牙髓可能含有一种单一的降解缓激肽的酶,且该酶可能是一种羧肽酶,与其他动物来源的已知激肽酶不同。

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