Verdon Julien, Falge Mirjam, Maier Elke, Bruhn Heike, Steinert Michael, Faber Cornelius, Benz Roland, Héchard Yann
Laboratoire de Chimie et Microbiologie de l'Eau, Unite Mixte de Recherche, Centre National de la Recherche Scientifique 6008, Université de Poitiers, Poitiers, France.
Biophys J. 2009 Oct 7;97(7):1933-40. doi: 10.1016/j.bpj.2009.06.053.
Warnericin RK is the first antimicrobial peptide known to be active against Legionella pneumophila, a pathogen bacterium that is responsible for severe pneumonia. Strikingly, this peptide displays a very narrow range of antimicrobial activity, almost limited to the Legionella genus, and a hemolytic activity. A similar activity has been described for delta-lysin, a well-known hemolytic peptide of Staphylococci that has not been described as antimicrobial. In this study we aimed to understand the mode of action of warnericin RK and to explain its particular target specificity. We found that warnericin RK permeabilizes artificial membranes in a voltage-independent manner. Osmotic protection experiments on erythrocytes showed that warnericin RK does not form well-defined pores, suggesting a detergent-like mode of action, as previously described for delta-lysin at high concentrations. Warnericin RK also permeabilized Legionella cells, and these cells displayed a high sensitivity to detergents. Depending on the detergent used, Legionella was from 10- to 1000-fold more sensitive than the other bacteria tested. Finally, the structure of warnericin RK was investigated by means of circular dichroism and NMR spectroscopy. The peptide adopted an amphiphilic alpha-helical structure, consistent with the proposed mode of action. We conclude that the specificity of warnericin RK toward Legionella results from both the detergent-like mode of action of the peptide and the high sensitivity of these bacteria to detergents.
沃纳霉素RK是已知的第一种对嗜肺军团菌具有活性的抗菌肽,嗜肺军团菌是一种导致严重肺炎的病原菌。引人注目的是,这种肽的抗菌活性范围非常狭窄,几乎仅限于军团菌属,并且具有溶血活性。对于δ-溶血素也有类似的活性描述,δ-溶血素是葡萄球菌中一种著名的溶血肽,但尚未被描述为具有抗菌作用。在本研究中,我们旨在了解沃纳霉素RK的作用模式,并解释其特殊的靶标特异性。我们发现沃纳霉素RK以电压非依赖方式使人工膜通透化。对红细胞的渗透保护实验表明,沃纳霉素RK不会形成明确的孔,这表明其作用模式类似于去污剂,正如之前对高浓度δ-溶血素的描述。沃纳霉素RK也能使军团菌细胞通透化,并且这些细胞对去污剂表现出高度敏感性。根据所使用的去污剂不同,军团菌比其他测试细菌的敏感性高10至1000倍。最后,通过圆二色性和核磁共振光谱研究了沃纳霉素RK的结构。该肽呈现两亲性α-螺旋结构,与所提出的作用模式一致。我们得出结论,沃纳霉素RK对军团菌的特异性源于该肽类似去污剂的作用模式以及这些细菌对去污剂的高度敏感性。