An Exocellular Cytolysin Produced by Vibrio vulnificus CDC B3547, a Clinical Isolate in Biotype 2 (Serovar E)

S. Miyoshi, A. Morita, T. Teranishi, K. Tomochika, Shigeo Yamamoto, S. Shinoda
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引用次数: 10

Abstract

Vibrio vulnificus biotype 2, a primary eel pathogen, is also an opportunistic pathogen for humans. The strains in this biotype secrete a cytolysin into the culture medium. The cytolysin from the strain CDC B3547 (ATCC 33817), which was originally isolated from a human leg wound, can disrupt various kinds of eukaryotic cells including erythrocytes and mast cells, and artificial vesicles, liposomes. The cytolysin is a 50 kDa single‐chain protein and is categorized into the pore‐forming toxins. After binding tightly to the cell‐membrane cholesterol in a temperature‐independent manner, the toxin molecules assemble each other in a temperature‐dependent manner, forming a small transmembrane pore. When incubated with a metalloprotease from the same species, the cytolysin is converted to the nicked toxin composed of some peptide chains, joined with disulfide bond(s). This nicked toxin is more hydrophilic while maintaining comparable cytolytic activity.
创伤弧菌CDC B3547产生的胞外溶细胞素,临床分离生物2型(血清型E)
创伤弧菌生物型2是鳗鱼的主要病原体,也是人类的机会致病菌。这种生物型的菌株分泌一种细胞溶素到培养基中。菌株CDC B3547 (ATCC 33817)的胞溶素最初从人腿伤口中分离出来,可以破坏多种真核细胞,包括红细胞和肥大细胞,以及人工囊泡,脂质体。胞溶素是一种50 kDa单链蛋白,被归类为成孔毒素。在以温度无关的方式与细胞膜胆固醇紧密结合后,毒素分子以温度依赖的方式相互组装,形成一个小的跨膜孔。当与来自同一物种的金属蛋白酶孵育时,细胞溶解素转化为由一些肽链组成的缺口毒素,由二硫键连接。这种有缺口的毒素更亲水,同时保持相当的细胞溶解活性。
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