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首页> 外文期刊>Cellular and molecular life sciences: CMLS >A molecular pin to study the dynamics of beta-barrel formation in pore-forming toxins on erythrocytes: a sliding model
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A molecular pin to study the dynamics of beta-barrel formation in pore-forming toxins on erythrocytes: a sliding model

机译:研究红细胞上成孔毒素中β-桶形成动力学的分子销:滑动模型

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摘要

gamma-Hemolysins are pore-forming toxins which develop from water-soluble monomers by combining two different 'albeit homologous' proteins. They form oligomeric pores in both cell and model membranes by undergoing a still poorly understood conformational rearrangement in the stem region. The stem is formed by three beta-strands, folded onto the core of the soluble protein and completely extended in the pore. We propose a new model to explain such a process. Seven double-cysteine mutants were developed by inserting one cysteine on the stretch that links the beta-hairpin to the core of the protein and another on different positions along the beta-strands. The membrane bound protein was blocked in a non-lytic state by S-S bond formation. Six mutants were oxidized as inactive intermediates, but became active after adding DTT. These results demonstrate that the stem extension can be temporarily frozen and that the beta-barrel formation occurs by beta-strand concerted step-by-step sliding.
机译:γ-溶血素是通过结合两种不同的“尽管具有同源性”蛋白质从水溶性单体形成的成孔毒素。它们通过在茎区域中进行仍不为人所知的构象重排而在细胞膜和模型膜中形成寡聚孔。茎由三个β链形成,折叠到可溶性蛋白的核上,并在孔中完全延伸。我们提出了一个新的模型来解释这一过程。通过在将β-发夹连接到蛋白质核心的链段上插入一个半胱氨酸,并在沿β链的不同位置插入另一个半胱氨酸,可以开发出七个双半胱氨酸突变体。通过S-S键形成,膜结合蛋白以非溶解状态被阻断。六个突变体被氧化为非活性中间体,但在添加DTT后变为活性。这些结果表明茎延伸可以被暂时冻结,并且β-桶的形成通过β-链协同的逐步滑动而发生。

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