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Soluble Oligomers of the Pore-forming Toxin Cytolysin A from Escherichia coli Are Off-pathway Products of Pore Assembly

机译:大肠杆菌的毛孔毒素溶菌素A的可溶性低聚物是毛孔装配的偏离产物。

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摘要

The α-pore-forming toxin Cytolysin A (ClyA) is responsible for the hemolytic activity of various Escherichia coli and Salmonella enterica strains. Soluble ClyA monomers spontaneously assemble into annular dodecameric pore complexes upon contact with membranes or detergent. At ClyA monomer concentrations above ∼100 nm, the rate-limiting step in detergent- or membrane- induced pore assembly is the unimolecular reaction from the monomer to the assembly-competent protomer, which then oligomerizes rapidly to active pore complexes. In the absence of detergent, ClyA slowly forms soluble oligomers. Here we show that soluble ClyA oligomers cannot form dodecameric pore complexes after the addition of detergent and are hemolytically inactive. In addition, we demonstrate that the natural cysteine pair Cys-87/Cys-285 of ClyA forms a disulfide bond under oxidizing conditions and that both the oxidized and reduced ClyA monomers assemble to active pores via the same pathway in the presence of detergent, in which an unstructured, monomeric intermediate is transiently populated. The results show that the oxidized ClyA monomer assembles to pore complexes about one order of magnitude faster than the reduced monomer because the unstructured intermediate of oxidized ClyA is less stable and dissolves more rapidly than the reduced intermediate. Moreover, we show that oxidized ClyA forms soluble, inactive oligomers in the absence of detergent much faster than the reduced monomer, providing an explanation for several contradictory reports in which oxidized ClyA had been described as inactive.
机译:形成α孔的毒素溶细胞素A(ClyA)负责各种大肠杆菌和肠沙门氏菌菌株的溶血活性。可溶性ClyA单体与膜或去污剂接触后会自发组装成环状十二聚体孔复合体。当ClyA单体的浓度高于约100 nm时,去污剂或膜诱导的孔组装中的限速步骤是从单体到具有组装能力的前驱体的单分子反应,然后迅速低聚为活性孔复合物。在没有去污剂的情况下,ClyA缓慢形成可溶性低聚物。在这里,我们显示可溶性ClyA低聚物在添加去污剂后不能形成十二聚体孔复合物,并且在溶血性方面无活性。另外,我们证明了ClyA的天然半胱氨酸对Cys-87 / Cys-285在氧化条件下形成二硫键,并且在洗涤剂存在下,氧化的和还原的ClyA单体都通过相同的途径组装成活性孔。非结构化的单体中间体被瞬时填充。结果表明,氧化的ClyA单体组装成孔复合物的速度比还原的单体快约一个数量级,这是因为氧化的ClyA的非结构化中间体比还原的中间体不稳定并且溶解得更快。此外,我们表明,在没有去污剂的情况下,氧化的ClyA形成可溶的,无活性的低聚物比还原的单体快得多,这为几个相互矛盾的报道提供了解释,其中氧化的ClyA被描述为无活性。

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