Chang Alan K, Kim Hyo Young, Park Jung Eun, Acharya Pankaj, Park Il-Seon, Yoon Seong Myeong, You Ho Jin, Hahm Kyung-Soo, Park Jong Kun, Lee Jung Sup
Research Center for Proteineous Materials, Chosun University, 375 Seosuk-dong, Dong-gu, Gwangju 501-759, Republic of Korea.
J Bacteriol. 2005 Oct;187(20):6909-16. doi: 10.1128/JB.187.20.6909-6916.2005.
Vibrio vulnificus is a causative agent of serious food-borne diseases in humans related to the consumption of raw seafood. It secretes a metalloprotease that is associated with skin lesions and serious hemorrhagic complications. In this study, we purified and characterized an extracellular metalloprotease (designated as vEP) having prothrombin activation and fibrinolytic activities from V. vulnificus ATCC 29307. vEP could cleave various blood clotting-associated proteins such as prothrombin, plasminogen, fibrinogen, and factor Xa, and the cleavage could be stimulated by addition of 1 mM Mn2+ in the reaction. The cleavage of prothrombin produced active thrombin capable of converting fibrinogen to fibrin. The formation of active thrombin appeared to be transient, with further cleavage resulting in a loss of activity. The cleavage of plasminogen, however, did not produce an active plasmin. vEP could cleave all three major chains of fibrinogen without forming a clot. It could cleave fibrin polymer formed by thrombin as well as the cross-linked fibrin formed by factor XIIIa. In addition, vEP could also cleave plasma proteins such as bovine serum albumin and gamma globulin, and its broad specificity is reflected in the cleavage sites, which include Asp207-Phe208 and Thr272-Ala273 bonds in prothrombin and a Tyr80-Leu81 bond in plasminogen. Taken together, the data suggest that vEP is a broad-specificity protease that could function as a prothrombin activator and a fibrinolytic enzyme to interfere with blood homeostasis as part of the mechanism associated with the pathogenicity of V. vulnificus in humans and thereby facilitate the development of systemic infection.
创伤弧菌是与食用生海鲜相关的人类严重食源性疾病的病原体。它分泌一种金属蛋白酶,该酶与皮肤损伤和严重的出血并发症有关。在本研究中,我们从创伤弧菌ATCC 29307中纯化并鉴定了一种具有凝血酶原激活和纤溶活性的细胞外金属蛋白酶(命名为vEP)。vEP可以切割各种与血液凝固相关的蛋白质,如凝血酶原、纤溶酶原、纤维蛋白原和因子Xa,并且在反应中添加1 mM Mn2+可刺激这种切割。凝血酶原的切割产生了能够将纤维蛋白原转化为纤维蛋白的活性凝血酶。活性凝血酶的形成似乎是短暂的,进一步切割会导致活性丧失。然而,纤溶酶原的切割并未产生活性纤溶酶。vEP可以切割纤维蛋白原的所有三条主要链而不形成凝块。它可以切割由凝血酶形成的纤维蛋白聚合物以及由因子XIIIa形成的交联纤维蛋白。此外,vEP还可以切割血浆蛋白,如牛血清白蛋白和γ球蛋白,其广泛的特异性体现在切割位点上,包括凝血酶原中的Asp207 - Phe208和Thr272 - Ala273键以及纤溶酶原中的Tyr80 - Leu81键。综上所述,数据表明vEP是一种广泛特异性的蛋白酶,它可以作为凝血酶原激活剂和纤溶酶发挥作用,干扰血液稳态,这是创伤弧菌在人类致病机制的一部分,从而促进全身感染的发展。