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兔源CAP18与革兰氏阴性菌外膜相互作用的分子机制

Molecular mechanisms of interaction of rabbit CAP18 with outer membranes of gram-negative bacteria.

作者信息

Gutsmann T, Larrick J W, Seydel U, Wiese A

机构信息

Department of Immunochemistry and Biochemical Microbiology, Center for Medicine and Biosciences, Research Center Borstel, Germany.

出版信息

Biochemistry. 1999 Oct 12;38(41):13643-53. doi: 10.1021/bi990643v.

Abstract

The mechanism of interaction of the cationic antimicrobial protein (18 kDa), CAP18, with the outer membrane of Gram-negative bacteria was investigated applying transmission electron microscopy and voltage-clamp techniques on artificial planar bilayer membranes. Electron micrographs of bacterial cells exposed to CAP18 showed damage to the outer membrane of the sensitive Escherichia coli strains F515 and ATCC 11775, whereas the membrane of the resistant Proteus mirabilis strain R45 remained intact. Electrical measurements on various planar asymmetric bilayer membranes, one side consisting of a phospholipid mixture and the other of different phospholipids or of lipopolysaccharide (reconstitution model of the outer membrane), yielded information about the influence of CAP18 on membrane integrity. Addition of CAP18 to the side with the varying lipid composition led to lipid-specific adsorption of CAP18 and subsequent induction of current fluctuations due to the formation of transient membrane lesions at a lipid-specific clamp voltage. We propose that the applied clamp voltage leads to reorientation of CAP18 molecules adsorbed to the bilayer into an active transmembrane configuration, allowing the formation of lesions by multimeric clustering.

摘要

应用透射电子显微镜和电压钳技术,在人工平面双层膜上研究了阳离子抗菌蛋白(18 kDa)CAP18与革兰氏阴性菌外膜的相互作用机制。暴露于CAP18的细菌细胞的电子显微照片显示,敏感大肠杆菌菌株F515和ATCC 11775的外膜受到损伤,而耐药奇异变形杆菌菌株R45的膜保持完整。在各种平面不对称双层膜上进行的电学测量,一侧由磷脂混合物组成,另一侧由不同的磷脂或脂多糖组成(外膜的重构模型),得到了关于CAP18对膜完整性影响的信息。将CAP18添加到脂质组成不同的一侧,导致CAP18发生脂质特异性吸附,随后在脂质特异性钳制电压下由于形成瞬时膜损伤而诱导电流波动。我们认为,所施加的钳制电压导致吸附在双层膜上的CAP18分子重新定向为活性跨膜构型,从而允许通过多聚体聚集形成损伤。

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