Pandit Riyaz Ahmad, Meetum Kanungsuk, Suvarnapunya Kittipong, Katzenmeier Gerd, Chaicumpa Wanpen, Angsuthanasombat Chanan
Graduate Program in Immunology, Faculty of Medicine Siriraj Hospital, Mahidol University, Bangkok 10700, Thailand.
Bacterial Protein Toxin Research Cluster, Institute of Molecular Biosciences, Mahidol University, Salaya Campus, Nakornpathom 73170, Thailand.
Biochem Biophys Res Commun. 2015 Oct 9;466(1):76-81. doi: 10.1016/j.bbrc.2015.08.110. Epub 2015 Aug 29.
The 126-kDa Bordetella pertussis CyaA-hemolysin (CyaA-Hly) was previously expressed in Escherichia coli as a soluble precursor that can be acylated to retain hemolytic activity. Here, we investigated structural and functional characteristics of a ∼100-kDa isolated RTX (Repeat-in-ToXin) subdomain (CyaA-RTX) of CyaA-Hly. Initially, we succeeded in producing a large amount with high purity of the His-tagged CyaA-RTX fragment and in establishing the interaction of acylated CyaA-Hly with sheep red blood cell (sRBC) membranes by immuno-localization. Following pre-incubation of sRBCs with non-acylated CyaA-Hly or with the CyaA-RTX fragment that itself produces no hemolytic activity, there was a dramatic decrease in CyaA-Hly-induced hemolysis. When CyaA-RTX was pre-incubated with anti-CyaA-RTX antisera, the capability of CyaA-RTX to neutralize the hemolytic activity of CyaA-Hly was greatly decreased. A homology-based model of the 100-kDa CyaA-RTX subdomain revealed a loop structure in Linker II sharing sequence similarity to human WW domains. Sequence alignment of Linker II with the human WW-domain family revealed highly conserved aromatic residues important for protein-protein interactions. Altogether, our present study demonstrates that the recombinant CyaA-RTX subdomain retains its functionality with respect to binding to target erythrocyte membranes and the WW-homologous region in Linker II conceivably serves as a functional segment required for receptor-binding activity.
126 kDa的百日咳博德特氏菌CyaA溶血素(CyaA-Hly)先前在大肠杆菌中作为可溶性前体表达,该前体可被酰化以保留溶血活性。在此,我们研究了CyaA-Hly约100 kDa的分离RTX(重复毒素)亚结构域(CyaA-RTX)的结构和功能特性。最初,我们成功大量生产了高纯度的His标签CyaA-RTX片段,并通过免疫定位确定了酰化的CyaA-Hly与绵羊红细胞(sRBC)膜的相互作用。在用未酰化的CyaA-Hly或本身不产生溶血活性的CyaA-RTX片段对sRBC进行预孵育后,CyaA-Hly诱导的溶血作用显著降低。当CyaA-RTX与抗CyaA-RTX抗血清预孵育时,CyaA-RTX中和CyaA-Hly溶血活性的能力大大降低。基于同源性的100 kDa CyaA-RTX亚结构域模型显示,连接子II中有一个环结构,与人类WW结构域具有序列相似性。连接子II与人类WW结构域家族的序列比对显示,对于蛋白质-蛋白质相互作用很重要的芳香族残基高度保守。总之,我们目前的研究表明,重组CyaA-RTX亚结构域在与靶红细胞膜结合方面保留了其功能,并且连接子II中的WW同源区域可能作为受体结合活性所需的功能片段。