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有证据表明,I型志贺样毒素的A2片段是全毒素完整性所必需的。

Evidence that the A2 fragment of Shiga-like toxin type I is required for holotoxin integrity.

作者信息

Austin P R, Jablonski P E, Bohach G A, Dunker A K, Hovde C J

机构信息

Department of Microbiology, Molecular Biology, and Biochemistry, University of Idaho, Moscow 83843.

出版信息

Infect Immun. 1994 May;62(5):1768-75. doi: 10.1128/iai.62.5.1768-1775.1994.

Abstract

Escherichia coli Shiga-like toxin type I (SLT-I) is a potent cytotoxin consisting of an enzymatically active A subunit and a pentameric B subunit that mediates toxin binding to susceptible eukaryotic cells. Evidence that the carboxy-terminal 38 amino acids of the A subunit are involved in holotoxin 1A:5B association is presented. We compared the ability of purified recombinant SLT-I B subunit (Slt-IB) to combine in vitro with purified recombinant SLT-I A subunit (Slt-IA; full-length subunit A includes amino acids 1 to 293) and its ability to combine with purified recombinant SLT-I A1 subunit (Slt-IA1; truncated subunit A includes amino acids 1 to 255). Each mixture was analyzed for biological and physical evidence of toxin assembly. Although Slt-IA successfully combined with Slt-IB to form a molecular species similar to holotoxin that was detectable by nondenaturing polyacrylamide gel electrophoresis and immunoblotting and yielded a molecule which was cytotoxic to cultured Vero cells, Slt-IA1 did not have this ability. Slt-IA1 was 36-fold more active than Slt-IA in an in vitro protein synthesis inhibition assay. These findings suggest that the Slt-IA2 fragment is crucial for formation of SLT holotoxin and stabilizes the interaction between the A and B subunits.

摘要

大肠杆菌I型志贺样毒素(SLT-I)是一种强效细胞毒素,由具有酶活性的A亚基和五聚体B亚基组成,B亚基介导毒素与易感真核细胞的结合。本文提供了A亚基羧基末端38个氨基酸参与全毒素1A:5B缔合的证据。我们比较了纯化的重组SLT-I B亚基(Slt-IB)在体外与纯化的重组SLT-I A亚基(Slt-IA;全长A亚基包括1至293个氨基酸)结合的能力,以及它与纯化的重组SLT-I A1亚基(Slt-IA1;截短的A亚基包括1至255个氨基酸)结合的能力。对每种混合物进行毒素组装的生物学和物理证据分析。尽管Slt-IA成功地与Slt-IB结合形成了一种类似于全毒素的分子物种,可通过非变性聚丙烯酰胺凝胶电泳和免疫印迹检测到,并且产生了一种对培养的Vero细胞具有细胞毒性的分子,但Slt-IA1没有这种能力。在体外蛋白质合成抑制试验中,Slt-IA1的活性比Slt-IA高36倍。这些发现表明,Slt-IA2片段对于SLT全毒素的形成至关重要,并稳定了A亚基和B亚基之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81cd/186405/efd1462c9ab5/iai00005-0278-a.jpg

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