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补体受体3的跨膜片段不参与细胞毒性活动,但决定了博德特氏菌腺苷酸环化酶毒素作用所需的受体结构。

Transmembrane segments of complement receptor 3 do not participate in cytotoxic activities but determine receptor structure required for action of Bordetella adenylate cyclase toxin.

作者信息

Wald Tomas, Osickova Adriana, Masin Jiri, Liskova Petra M, Petry-Podgorska Inga, Matousek Tomas, Sebo Peter, Osicka Radim

机构信息

Institute of Microbiology of the CAS, v. v. i., Videnska 1083, 142 20, Prague 4, Czech Republic.

Institute of Microbiology of the CAS, v. v. i., Videnska 1083, 142 20, Prague 4, Czech Republic Department of Biochemistry, Faculty of Science, Charles University in Prague, Hlavova 8, 128 43, Prague 2, Czech Republic.

出版信息

Pathog Dis. 2016 Apr;74(3). doi: 10.1093/femspd/ftw008. Epub 2016 Jan 21.

Abstract

Adenylate cyclase toxin-hemolysin (CyaA, ACT or AC-Hly) of the whooping cough agent Bordetella pertussis penetrates phagocytes expressing the integrin complement receptor 3 (CR3, CD11b/CD18, α(M)β(2) or Mac-1). CyaA translocates its adenylate cyclase (AC) enzyme domain into cell cytosol and catalyzes unregulated conversion of ATP to cAMP, thereby subverting cellular signaling. In parallel, CyaA forms small cation-selective membrane pores that permeabilize cells for potassium efflux, contributing to cytotoxicity of CyaA and eventually provoking colloid-osmotic cell lysis. To investigate whether the single-pass α-helical transmembrane segments of CR3 subunits CD11b and CD18 do directly participate in AC domain translocation and/or pore formation by the toxin, we expressed in CHO cells variants of CR3 that contained artificial transmembrane segments, or lacked the transmembrane segment(s) at all. The results demonstrate that the transmembrane segments of CR3 are not directly involved in the cytotoxic activities of CyaA but serve for maintaining CR3 in a conformation that is required for efficient toxin binding and action.

摘要

百日咳杆菌的腺苷酸环化酶毒素-溶血素(CyaA、ACT或AC-Hly)可穿透表达整合素补体受体3(CR3、CD11b/CD18、α(M)β(2)或Mac-1)的吞噬细胞。CyaA将其腺苷酸环化酶(AC)酶结构域转运到细胞胞质溶胶中,并催化ATP无调节地转化为cAMP,从而破坏细胞信号传导。同时,CyaA形成小的阳离子选择性膜孔,使细胞对钾外流具有通透性,这有助于CyaA的细胞毒性,并最终引发胶体渗透细胞裂解。为了研究CR3亚基CD11b和CD18的单次跨膜α螺旋片段是否直接参与毒素的AC结构域转运和/或孔形成,我们在CHO细胞中表达了含有人工跨膜片段或完全缺乏跨膜片段的CR3变体。结果表明,CR3的跨膜片段不直接参与CyaA的细胞毒性活性,而是用于将CR3维持在有效毒素结合和作用所需的构象中。

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