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博德特氏菌腺苷酸环化酶(AC)毒素 - 溶血素的第三种活性。AC结构域多肽的膜转位促进钙流入CD11b +单核细胞,且独立于催化活性和溶血活性。

Third activity of Bordetella adenylate cyclase (AC) toxin-hemolysin. Membrane translocation of AC domain polypeptide promotes calcium influx into CD11b+ monocytes independently of the catalytic and hemolytic activities.

作者信息

Fiser Radovan, Masín Jirí, Basler Marek, Krusek Jan, Spuláková Veronika, Konopásek Ivo, Sebo Peter

机构信息

Department of Genetics and Microbiology, Faculty of Science, Charles University, CZ-128 44, Prague 2.

出版信息

J Biol Chem. 2007 Feb 2;282(5):2808-20. doi: 10.1074/jbc.M609979200. Epub 2006 Dec 4.

Abstract

The Bordetella adenylate cyclase toxin-hemolysin (CyaA) targets phagocytes expressing the alpha(M)beta2 integrin (CD11b/CD18), permeabilizes their membranes by forming small cation-selective pores, and delivers into cells a calmodulin-activated adenylate cyclase (AC) enzyme that dissipates cytosolic ATP into cAMP. We describe here a third activity of CyaA that yields elevation of cytosolic calcium concentration ([Ca2+]i) in target cells. The CyaA-mediated [Ca2+]i increase in CD11b+ J774A.1 monocytes was inhibited by extracellular La3+ ions but not by nifedipine, SK&F 96365, flunarizine, 2-aminoethyl diphenylborinate, or thapsigargin, suggesting that influx of Ca2+ into cells was not because of receptor signaling or opening of conventional calcium channels by cAMP. Compared with intact CyaA, a CyaA-AC- toxoid unable to generate cAMP promoted a faster, albeit transient, elevation of [Ca2+]i. This was not because of cell permeabilization by the CyaA hemolysin pores, because a mutant exhibiting a strongly enhanced pore-forming activity (CyaA-E509K/E516K), but unable to deliver the AC domain into cells, was also unable to elicit a [Ca2+]i increase. Further mutations interfering with AC translocation into cells, such as proline substitutions of glutamate residues 509 or 570 or deletion of the AC domain as such, reduced or ablated the [Ca2+]i-elevating capacity of CyaA. Moreover, structural alterations within the AC domain, because of insertion of various oligopeptides, differently modulated the kinetics and extent of Ca2+ influx elicited by the respective AC- toxoids. Hence, the translocating AC polypeptide itself appears to participate in formation of a novel type of membrane path for calcium ions, contributing to action of CyaA in an unexpected manner.

摘要

博德特氏菌腺苷酸环化酶毒素 - 溶血素(CyaA)作用于表达α(M)β2整合素(CD11b/CD18)的吞噬细胞,通过形成小的阳离子选择性孔使细胞膜通透,并将一种钙调蛋白激活的腺苷酸环化酶(AC)酶递送到细胞内,该酶将胞质ATP消耗为cAMP。我们在此描述CyaA的第三种活性,它可使靶细胞内的胞质钙浓度([Ca2+]i)升高。细胞外La3+离子可抑制CyaA介导的CD11b+ J774A.1单核细胞中[Ca2+]i的增加,但硝苯地平、SK&F 96365、氟桂利嗪、2 - 氨基乙基二苯基硼酸盐或毒胡萝卜素则无此作用,这表明Ca2+流入细胞并非由于受体信号传导或cAMP使传统钙通道开放所致。与完整的CyaA相比,一种无法产生cAMP的CyaA - AC类毒素能促进[Ca2+]i更快升高,尽管是短暂的。这并非由于CyaA溶血素孔导致细胞通透,因为一个表现出强烈增强的成孔活性的突变体(CyaA - E509K/E516K),但无法将AC结构域递送到细胞内,也无法引发[Ca2+]i增加。进一步干扰AC转运到细胞内的突变,如谷氨酸残基509或570的脯氨酸替代或AC结构域的缺失,会降低或消除CyaA升高[Ca2+]i的能力。此外,由于插入各种寡肽导致AC结构域内的结构改变,会不同程度地调节相应AC类毒素引发的Ca2+内流的动力学和程度。因此,转运的AC多肽本身似乎参与形成一种新型的钙离子膜通道,以意想不到的方式促成了CyaA的作用。

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