Nagai T, Kawabata S
Department of Molecular Biology, Graduate School of Medical Science, Kyushu University, Fukuoka 812-8582, Japan.
J Biol Chem. 2000 Sep 22;275(38):29264-7. doi: 10.1074/jbc.M002556200.
Phenol oxidase, a copper-containing enzyme, is widely distributed not only in animals but also in plants and fungi, which is responsible for initiating the biosynthesis of melanin. Activation of prophenol oxidase in arthropods is important in host defense. However, the prophenol oxidase-activating system remains poorly understood at the molecular level. Here we show that the coagulation cascade of the horseshoe crab Tachypleus tridentatus is linked to prophenol oxidase activation, with the oxygen carrier hemocyanin functioning as a substitute for prophenol oxidase. Tachypleus clotting enzyme functionally transforms hemocyanin to phenol oxidase, and the conversion reaches a plateau at 1:1 stoichiometry without proteolytic cleavage. The active site-masked clotting enzyme also has the same effect, suggesting that complex formation of the clotting enzyme with hemocyanin is critical for the conversion. The two systems of blood coagulation and prophenol oxidase activation may have evolved from a common ancestral protease cascade.
酚氧化酶是一种含铜酶,不仅广泛分布于动物中,还存在于植物和真菌中,它负责启动黑色素的生物合成。节肢动物中前酚氧化酶的激活在宿主防御中很重要。然而,前酚氧化酶激活系统在分子水平上仍知之甚少。在这里,我们表明,中国鲎的凝血级联反应与前酚氧化酶激活相关联,其中氧载体血蓝蛋白起着前酚氧化酶的替代作用。鲎凝血酶在功能上把血蓝蛋白转化为酚氧化酶,并且在1:1化学计量比时转化达到平台期,且无蛋白水解切割。活性位点被掩盖的凝血酶也有相同效果,这表明凝血酶与血蓝蛋白的复合物形成对于这种转化至关重要。凝血和前酚氧化酶激活这两个系统可能是从一个共同的祖先蛋白酶级联进化而来的。