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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Streptolysin O: the C-terminal, tryptophan-rich domain carries functional sites for both membrane binding and self-interaction but not for stable oligomerization
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Streptolysin O: the C-terminal, tryptophan-rich domain carries functional sites for both membrane binding and self-interaction but not for stable oligomerization

机译:链球菌溶血素O:C端富含色氨酸的结构域带有膜结合和自我相互作用的功能位点,但不具有稳定的寡聚作用

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摘要

Streptolysin O belongs to the class of thiol-activated toxins, which are single chain, four-domain proteins that bind to membranes containing cholesterol and then assemble to form large oligomeric pores. Membrane binding involves a conserved tryptophan-rich sequence motif located within the C-terminally located domain 4. In contrast, sites involved in oligomerization and pore formation have been assigned to domains 1 and 3, respectively. We here examined the functional properties of domain 4, which was recobinantly expressed with an N-terminal histidine tag for purification and an additional cysteine residue for covalent labeling. The fluorescently labeled fragment readily bound to membranes, but it did not form oligomers nor lyse cell membranes. Moreover, the labeled fragment did not detectably become incorporated into hybrid oligomers when combined with lytically active full-length toxin. However, when present in large excess over the active toxin, the domain 4 fragment effected reduction of hemolytic activity and of functional pore size, which indicates interference with oligomerization of the lytically active species. Our findings support the notion that domain 4 of the streptolysin O molecule may fold autonomously, is essential for membrane binding and is capable not of irreversible but of reversible association with the entire toxin molecule.
机译:链球菌溶血素O属于巯基活化的毒素,是单链四结构域蛋白,与包含胆固醇的膜结合,然后组装形成大的寡聚孔。膜结合涉及位于C末端结构域4内的保守的富含色氨酸的序列基序。相反,参与寡聚化和孔形成的位点已分别分配给结构域1和3。我们在这里检查了结构域4的功能特性,该结构域与N端组氨酸标签进行重组表达以进行纯化,另外一个半胱氨酸残基进行共价标记。荧光标记的片段很容易与膜结合,但它既不形成寡聚物也不裂解细胞膜。而且,当与裂解活性的全长毒素结合时,标记的片段没有可检测地掺入杂合低聚物中。然而,当以超过活性毒素的大量过量存在时,结构域4片段导致溶血活性和功能孔径的降低,这表明干扰了裂解活性物质的低聚。我们的发现支持以下观点:链球菌溶血素O分子的结构域4可以自主折叠,对于膜结合必不可少,并且与整个毒素分子不可逆转但可逆结合。

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