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钙与百日咳博德特氏菌腺苷酸环化酶毒素的相互作用。多个钙结合位点的表征及钙诱导的构象变化。

Interaction of calcium with Bordetella pertussis adenylate cyclase toxin. Characterization of multiple calcium-binding sites and calcium-induced conformational changes.

作者信息

Rose T, Sebo P, Bellalou J, Ladant D

机构信息

Laboratoire de Résonance Magnétique Nucléaire, Institut Pasteur, Paris, France.

出版信息

J Biol Chem. 1995 Nov 3;270(44):26370-6. doi: 10.1074/jbc.270.44.26370.

Abstract

The adenylate cyclase (CyaA) secreted by Bordetella pertussis is a toxin that is able to enter eukaryotic cells and cause a dramatic increase in cAMP level. In addition, the toxin also exhibits an intrinsic hemolytic activity that is independent from the ATP cycling catalytic activity of the toxin. Both the cytotoxic and hemolytic activities are calcium-dependent. In this work, we have analyzed the calcium interacting properties of CyaA. We have shown that CyaA exposed to CaCl2 could retain membrane binding capability and hemolytic activity when it was further assayed in the presence of an excess of EGTA. Determination of the calcium content of CyaA exposed first to calcium and subsequently to EGTA indicated that some (3-5) calcium ions remained bound to the protein, suggesting the existence of Ca2+ binding sites of high affinity. Binding of Ca2+ to these sites might be necessary for both the membrane binding capability and the hemolytic activity of the toxin. In addition, CyaA possesses a large number (about 45) of low affinity (KD = 0.5-0.8 mM) Ca2+ binding sites that are located in the C terminus of the toxin, between amino acids 1007 and 1706. This region mainly consists of about 45 repeated sequences of the type GGXGXDXLX (where X represents any amino acid) that are characteristic of the RTX (Repeat in ToXin) bacterial protein family. Our data suggest that each one can bind one calcium ion. Circular dichroism spectroscopy analysis showed that calcium binding to the low affinity sites induces a large conformational change of CyaA, as revealed by an important increase in the content of alpha-helical structures. This conformational change might be directly involved in the Ca(2+)-dependent translocation of the catalytic domain of CyaA through the plasma membrane of target cells.

摘要

百日咳博德特氏菌分泌的腺苷酸环化酶(CyaA)是一种毒素,它能够进入真核细胞并导致细胞内cAMP水平急剧升高。此外,该毒素还表现出一种内在的溶血活性,这种活性独立于毒素的ATP循环催化活性。细胞毒性和溶血活性均依赖于钙离子。在本研究中,我们分析了CyaA与钙相互作用的特性。我们发现,暴露于CaCl2的CyaA在过量EGTA存在下进一步检测时,仍能保持膜结合能力和溶血活性。对先暴露于钙然后再暴露于EGTA的CyaA的钙含量测定表明,有一些(3 - 5个)钙离子仍与该蛋白结合,这表明存在高亲和力的Ca2+结合位点。Ca2+与这些位点的结合可能对于毒素的膜结合能力和溶血活性都是必需的。此外,CyaA在毒素的C末端,氨基酸1007和1706之间,拥有大量(约45个)低亲和力(KD = 0.5 - 0.8 mM)的Ca2+结合位点。该区域主要由约45个GGXGXDXLX类型的重复序列组成(其中X代表任何氨基酸),这是RTX(毒素中的重复序列)细菌蛋白家族的特征。我们的数据表明每个这样的序列可以结合一个钙离子。圆二色光谱分析表明,钙与低亲和力位点的结合会诱导CyaA发生较大的构象变化,这表现为α - 螺旋结构含量的显著增加。这种构象变化可能直接参与了CyaA催化结构域通过靶细胞质膜的Ca(2+)依赖性转运。

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