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蜡样芽孢杆菌溶血素BL的组分鉴定

Characterization of the components of hemolysin BL from Bacillus cereus.

作者信息

Beecher D J, Macmillan J D

机构信息

Department of Biochemistry and Microbiology, New Jersey Agricultural Experiment Station, Cook College, Rutgers University, New Brunswick 08903-0231.

出版信息

Infect Immun. 1991 May;59(5):1778-84. doi: 10.1128/iai.59.5.1778-1784.1991.

Abstract

Previously we described the partial purification of a novel hemolysin from Bacillus cereus and showed that hemolytic activity required the combined action of at least two components, called B and L to signify their cell-binding and cell-lytic roles in this activity. On further purification, as described in the present article, a combination of anion-exchange chromatography and polyacrylamide gel electrophoresis separated three proteins, B, L1, and L2 (35, 36, and 45 kDa, respectively). Individually, these proteins were inactive in hemolytic and vascular permeability assays, and combinations of B and L1 or B and L2 were either inactive or slightly active. Combinations of all three moieties produced the unique ring-shaped zone of hemolysis, a previously described characteristic of hemolysin BL, as well as edema and bluing in the vascular permeability assay. Since the vascular permeability assay is known to correlate with enterotoxicity, these results suggest that hemolysin BL is enterotoxigenic. Furthermore, the molecular weights and isoelectric point values of the hemolysin BL components are consistent with those described by others for the multicomponent diarrheal enterotoxin of B. cereus. Immunofluorescent staining of B-treated erythrocytes confirmed that B binds to cells as an initial step required before the L components can act to cause cell lysis.

摘要

此前我们描述了从蜡样芽孢杆菌中部分纯化一种新型溶血素的过程,并表明溶血活性需要至少两种成分的共同作用,将其分别称为B和L,以表明它们在该活性中细胞结合和细胞裂解的作用。如本文所述,经过进一步纯化,通过阴离子交换色谱法和聚丙烯酰胺凝胶电泳相结合,分离出了三种蛋白质,即B、L1和L2(分子量分别为35、36和45 kDa)。单独来看,这些蛋白质在溶血和血管通透性测定中均无活性,B与L1或B与L2的组合要么无活性,要么活性微弱。所有三个部分的组合产生了独特的环形溶血区,这是先前描述的溶血素BL的一个特征,同时在血管通透性测定中还出现了水肿和发蓝现象。由于已知血管通透性测定与肠毒性相关,这些结果表明溶血素BL具有肠毒素生成能力。此外,溶血素BL各成分的分子量和等电点值与其他人描述的蜡样芽孢杆菌多成分腹泻肠毒素的一致。对经B处理的红细胞进行免疫荧光染色证实,B作为L成分作用导致细胞裂解之前所需的初始步骤与细胞结合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c623/257915/5dd236266654/iai00041-0204-a.jpg

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