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Membrane-Active Properties of an Amphitropic Peptide from the CyaA Toxin Translocation Region

机译:CyaA毒素易位区域的两性肽的膜活性特性。

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摘要

The adenylate cyclase toxin CyaA is involved in the early stages of infection by Bordetella pertussis, the causative agent of whooping cough. CyaA intoxicates target cells by a direct translocation of its catalytic domain (AC) across the plasma membrane and produces supraphysiological levels of cAMP, leading to cell death. The molecular process of AC translocation remains largely unknown, however. We have previously shown that deletion of residues 375–485 of CyaA selectively abrogates AC translocation into eukaryotic cells. We further identified within this “translocation region” (TR), P454 (residues 454–484), a peptide that exhibits membrane-active properties, i.e., is able to bind and permeabilize lipid vesicles. Here, we analyze various sequences from CyaA predicted to be amphipatic and show that although several of these peptides can bind membranes and adopt a helical conformation, only the P454 peptide is able to permeabilize membranes. We further characterize the contributions of the two arginine residues of P454 to membrane partitioning and permeabilization by analyzing the peptide variants in which these residues are substituted by different amino acids (e.g., A, K, Q, and E). Our data shows that both arginine residues significantly contribute, although diversely, to the membrane-active properties of P454, i.e., interactions with both neutral and anionic lipids, helix formation in membranes, and disruption of lipid bilayer integrity. These results are discussed in the context of the translocation process of the full-length CyaA toxin.
机译:腺苷酸环化酶毒素CyaA参与百日咳百日咳杆菌感染,百日咳是百日咳的病原。 CyaA通过其催化结构域(AC)在整个质膜上的直接转运而使靶细胞中毒,并产生超生理水平的cAMP,从而导致细胞死亡。但是,AC易位的分子过程仍然未知。我们先前已经表明,删除CyaA的375-485位残基可以选择性地消除AC易位进入真核细胞。我们进一步在该“易位区域”(TR)中鉴定出P454(残基454-484),该肽具有膜活性,即能够结合和渗透脂质囊泡。在这里,我们分析了来自CyaA的预测为两性的各种序列,结果表明,尽管其中一些肽可以结合膜并采用螺旋构象,但只有P454肽能够透化膜。通过分析其中这些残基被不同氨基酸(例如,A,K,Q和E)取代的肽变体,我们进一步表征了P454的两个精氨酸残基对膜分配和透化的贡献。我们的数据表明,两个精氨酸残基均对P454的膜活性具有显着影响,尽管有多种不同,即与中性和阴离子脂质的相互作用,膜中螺旋的形成以及脂质双层完整性的破坏。在全长CyaA毒素的转运过程中讨论了这些结果。

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