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来自弧菌属菌株NUF-BPP1的细胞外碱性金属内肽酶的血凝活性

Hemagglutinating activity of extracellular alkaline metalloendopeptidases from Vibrio sp. NUF-BPP1.

作者信息

Fukuda K, Hamaguchi N, Oda T, Ishimatsu A, Muramatsu T

机构信息

Division of Biochemistry, Faculty of Fisheries, Nagasaki University, Japan.

出版信息

Biosci Biotechnol Biochem. 1998 Jun;62(6):1157-60. doi: 10.1271/bbb.62.1157.

Abstract

Alkaline metalloendopeptidase (metalloprotease) AP1 (48 kDa) from Vibrio sp. isolated from the intestine of a five-barred goatfish (Parupeneus trifasciatus) was reported in our previous paper to produce AP2 (36 kDa) by releasing a peptide fragment (molecular mass of about 12 kDa) from the C-terminal end of AP1 by autodigestion. AP1 strongly agglutinated fish (flounder, Paralichthys olivaceus) and rabbit erythrocytes, and weakly chicken erythrocytes. In contrast, AP2 had no significant hemagglutinating activity toward any erythrocytes tested, except for weak activity on flounder erythrocytes, suggesting that the C-terminal region of AP1 may be required for the strong hemagglutinating activity. The optimum temperature for the hemagglutinating activity of AP1 was found to be lower than that for the proteolytic activity. At acidic pHs (below pH 7.5), the hemagglutinating activity of AP1 decreased, and its pH profile resembled that of the proteolytic activity. The hemagglutinating activity of AP1 was not observed in the presence of o-phenanthroline or synthetic and proteinous substrates, but different kinds of saccharides and lipids had no effect. While the proteolytic activity of AP1 was not affected by CaCl2, the hemagglutinating activity of AP1 decreased with increases in CaCl2 concentrations. These results suggested that the hemagglutinating activity of these proteases (AP1 and AP2) was most likely caused by their proteolytic action on erythrocyte cell surfaces.

摘要

我们之前的论文报道,从五线天竺鲷(Parupeneus trifasciatus)肠道中分离出的弧菌属碱性金属内肽酶(金属蛋白酶)AP1(48 kDa)通过自身消化从AP1的C末端释放一个肽片段(分子量约12 kDa)从而产生AP2(36 kDa)。AP1能强烈凝集鱼类(比目鱼,Paralichthys olivaceus)和兔红细胞,对鸡红细胞的凝集作用较弱。相比之下,AP2对所测试的任何红细胞均无显著的血凝活性,除了对比目鱼红细胞有较弱活性,这表明AP1的C末端区域可能是强血凝活性所必需的。发现AP1血凝活性的最适温度低于其蛋白水解活性的最适温度。在酸性pH值(低于pH 7.5)下,AP1的血凝活性降低,其pH曲线与蛋白水解活性的曲线相似。在邻菲罗啉、合成底物和蛋白质底物存在的情况下未观察到AP1的血凝活性,但不同种类的糖类和脂质没有影响。虽然AP1的蛋白水解活性不受CaCl2的影响,但AP1的血凝活性随着CaCl2浓度的增加而降低。这些结果表明,这些蛋白酶(AP1和AP2)的血凝活性很可能是由它们对红细胞表面的蛋白水解作用引起的。

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