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志贺毒素的受体亲和力、稳定性和结合模式是毒性的决定因素。

Receptor affinity, stability and binding mode of Shiga toxins are determinants of toxicity.

作者信息

Shimizu Takeshi, Sato Toshio, Kawakami Satomi, Ohta Toshiko, Noda Masatoshi, Hamabata Takashi

机构信息

Department of Molecular Infectiology, Graduate School of Medicine, Chiba University, 1-8-1 Inohana, Chiba 260-8670, Japan.

出版信息

Microb Pathog. 2007 Aug-Sep;43(2-3):88-95. doi: 10.1016/j.micpath.2007.04.003. Epub 2007 Apr 21.

Abstract

The closely related Shiga toxins, Shiga toxin 1 (Stx1) and Shiga toxin 2 (Stx2), can bind to Gb3 receptors. However, Stx2-producing enterohemorrhagic Escherichia coli (EHEC) strains are more commonly associated with serious human disease (viz., hemolytic-uremic syndrome) than Stx1-producing strains. To clarify the relationship between properties and toxicity of these toxins, we constructed and analyzed a hybrid holotoxin composed of Stx2A and Stx1B, designated as Stx2A1B, and a B subunit chimeric holotoxin composed of Stx2A and Stx2B (III V), designated as Stx2A2B (III V). The affinity of Stx2A1B to Gb3 was lower than that of Stx1, higher than that of Stx2 and identical to that of Stx2A2B (III V). On the other hand, the 50% lethal dose (LD(50)) for mice of Stx2A1B was lower than that of Stx1, but higher than that of Stx2. These results suggested that pathogenicity in mice was inversely related to the receptor affinity of the holotoxins. However, LD(50) of Stx2A1B was not identical to that of Stx2A2B (III V). Gel filtration analysis indicated that Stx2A2B (III V) was relatively less stable than Stx2A1B. Moreover, cross-linking experiments demonstrated that the modes of cell surface binding of Stx2A2B (III V) and Stx2A1B were different. These results indicated that the receptor affinity, stability and binding mode of Shiga toxins might be important determinants for toxicity in mice.

摘要

密切相关的志贺毒素,即志贺毒素1(Stx1)和志贺毒素2(Stx2),能够与Gb3受体结合。然而,产志贺毒素2的肠出血性大肠杆菌(EHEC)菌株比产志贺毒素1的菌株更常与严重的人类疾病(即溶血尿毒综合征)相关。为了阐明这些毒素的特性与毒性之间的关系,我们构建并分析了一种由Stx2A和Stx1B组成的杂合全毒素,命名为Stx2A1B,以及一种由Stx2A和Stx2B(III V)组成的B亚基嵌合全毒素,命名为Stx2A2B(III V)。Stx2A1B对Gb3的亲和力低于Stx1,高于Stx2,且与Stx2A2B(III V)相同。另一方面,Stx2A1B对小鼠的50%致死剂量(LD(50))低于Stx1,但高于Stx2。这些结果表明,小鼠体内的致病性与全毒素的受体亲和力呈负相关。然而,Stx2A1B的LD(50)与Stx2A2B(III V)并不相同。凝胶过滤分析表明,Stx2A2B(III V)比Stx2A1B相对更不稳定。此外,交联实验表明,Stx2A2B(III V)和Stx2A1B在细胞表面的结合模式不同。这些结果表明,志贺毒素的受体亲和力、稳定性和结合模式可能是决定其对小鼠毒性的重要因素。

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