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百日咳博德特氏菌中单体、钙负荷腺苷酸环化酶毒素 CyaA 的稳定性、结构和功能特性。

Stability, structural and functional properties of a monomeric, calcium-loaded adenylate cyclase toxin, CyaA, from Bordetella pertussis.

机构信息

Institut Pasteur, UMR CNRS 3528, Chemistry and Structural Biology Department, 75724 PARIS cedex 15, France.

Institut de Biologie Intégrative de la Cellule, UMR 9198, Université Paris-Sud, F-91405 ORSAY Cedex, France.

出版信息

Sci Rep. 2017 Feb 10;7:42065. doi: 10.1038/srep42065.

Abstract

Bordetella pertussis, the causative agent of whooping cough, secretes an adenylate cyclase toxin, CyaA, which invades eukaryotic cells and alters their physiology by cAMP overproduction. Calcium is an essential cofactor of CyaA, as it is the case for most members of the Repeat-in-ToXins (RTX) family. We show that the calcium-bound, monomeric form of CyaA, hCyaAm, conserves its permeabilization and haemolytic activities, even in a fully calcium-free environment. In contrast, hCyaAm requires sub-millimolar calcium in solution for cell invasion, indicating that free calcium in solution is involved in the CyaA toxin translocation process. We further report the first in solution structural characterization of hCyaAm, as deduced from SAXS, mass spectrometry and hydrodynamic studies. We show that hCyaAm adopts a compact and stable state that can transiently conserve its conformation even in a fully calcium-free environment. Our results therefore suggest that in hCyaAm, the C-terminal RTX-domain is stabilized in a high-affinity calcium-binding state by the N-terminal domains while, conversely, calcium binding to the C-terminal RTX-domain strongly stabilizes the N-terminal regions. Hence, the different regions of hCyaAm appear tightly connected, leading to stabilization effects between domains. The hysteretic behaviour of CyaA in response to calcium is likely shared by other RTX cytolysins.

摘要

百日咳博德特氏菌是百日咳的病原体,它分泌一种腺苷酸环化酶毒素 CyaA,该毒素能入侵真核细胞,并通过 cAMP 的过度产生改变其生理机能。钙是 CyaA 的必需辅因子,正如重复入侵毒素 (RTX) 家族的大多数成员一样。我们发现,钙结合的单体形式的 CyaA,hCyaAm,保留了其通透和溶血活性,即使在完全无钙的环境中也是如此。相比之下,hCyaAm 细胞入侵需要亚毫摩尔浓度的游离钙,这表明溶液中的游离钙参与了 CyaA 毒素转运过程。我们进一步通过 SAXS、质谱和流体力学研究,报道了 hCyaAm 的第一个溶液结构特征。我们发现 hCyaAm 采用了一种紧凑且稳定的状态,即使在完全无钙的环境中,也可以暂时保持其构象。因此,我们的结果表明,在 hCyaAm 中,C 端 RTX 结构域通过 N 端结构域稳定在高亲和力钙结合状态,而相反,钙结合到 C 端 RTX 结构域会强烈稳定 N 端区域。因此,hCyaAm 的不同区域似乎紧密相连,导致域间稳定效应。CyaA 对钙的滞后行为可能与其他 RTX 细胞溶素共享。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/206a/5301233/da55fcba2bee/srep42065-f1.jpg

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