Miyoshi S, Kawata K, Tomochika K, Shinoda S
Faculty of Pharmaceutical Sciences, Okayama University, Okayama, Japan.
Microbiol Immunol. 1999;43(1):79-82. doi: 10.1111/j.1348-0421.1999.tb02376.x.
Vibrio vulnificus protease (VVP), a 45-kDa zinc metalloprotease, consists of two functional domains: an N-terminal 35-kDa polypeptide having endoproteinase activity, and a C-terminal 10-kDa polypeptide that mediates the binding of VVP to the erythrocyte membrane. Therefore, VVP, but not its N-terminal endoproteinase domain alone, has agglutinating activity to rabbit erythrocytes. When a single zinc atom in the catalytic center was substituted by treatment with CuCl2 or NiCl2, proteolytic and hemagglutinating activities were reduced by Ni substitution but not by Cu substitution. Cu-treated 35-kDa polypeptide showed sufficient affinity of the catalytic center and weak binding ability to the erythrocyte membrane, but the Ni-treated polypeptide did not. These results suggest that the binding of endoproteinase domain to membrane is also necessary for hemagglutination.
创伤弧菌蛋白酶(VVP)是一种45 kDa的锌金属蛋白酶,由两个功能结构域组成:一个具有内蛋白酶活性的N端35 kDa多肽,以及一个介导VVP与红细胞膜结合的C端10 kDa多肽。因此,VVP本身而非单独的N端内蛋白酶结构域对兔红细胞具有凝集活性。当催化中心的单个锌原子用CuCl2或NiCl2处理进行取代时,蛋白水解和血凝活性因镍取代而降低,但铜取代则不会。经铜处理的35 kDa多肽显示出催化中心具有足够的亲和力,且对红细胞膜的结合能力较弱,但经镍处理的多肽则不然。这些结果表明,内蛋白酶结构域与膜的结合对于血凝也是必需的。