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环境条件对枯草芽孢杆菌产生的生物活性脂肽丰原素界面组织的影响。

Influence of environmental conditions on the interfacial organisation of fengycin, a bioactive lipopeptide produced by Bacillus subtilis.

作者信息

Eeman Marc, Pegado Luis, Dufrêne Yves F, Paquot Michel, Deleu Magali

机构信息

Unité de Chimie Biologique Industrielle, Faculté Universitaire des Sciences Agronomiques de Gembloux, Passage des Déportés, 2, B-5030 Gembloux, Belgium.

出版信息

J Colloid Interface Sci. 2009 Jan 15;329(2):253-64. doi: 10.1016/j.jcis.2008.10.017. Epub 2008 Oct 14.

Abstract

The effect of the environmental conditions both on the behaviour of fengycin at the air-aqueous interface and on its interaction with DPPC was studied using surface pressure-area isotherms and AFM. The ionisation state of fengycin is at the origin of its monolayer interfacial properties. The most organised interfacial arrangement is obtained when fengycin behaves as if having zero net charge (pH 2). In a fully ionised state (pH 7.4), the organisation and the stability of fengycin monolayers depend on the ionic strength in the subphase. This can modulate the surface potential of fengycin and consequently the electrostatic repulsions inside the interfacial monolayer, as well as the lipopeptide interaction with the layer of water molecules forming the air-water interface. Intermolecular interactions of fengycin with DPPC are also strongly affected by the ionisation state of lipopeptide and the surface pressure (Pi) of the monolayer. A better miscibility between both interfacial components is observed at pH 2, while negatively charged lipopeptide molecules are segregated from the DPPC phase. A progressive desorption of fengycin from the interface is observed at pH 7.4 when Pi increases while at pH 2, fengycin desorption brutally occurs when Pi rises above Pi value of the intermediate plateau.

摘要

利用表面压力-面积等温线和原子力显微镜研究了环境条件对丰原素在气-水界面行为及其与二棕榈酰磷脂酰胆碱(DPPC)相互作用的影响。丰原素的电离状态是其单分子层界面性质的根源。当丰原素表现出净电荷为零(pH 2)时,可获得最有序的界面排列。在完全电离状态(pH 7.4)下,丰原素单分子层的组织和稳定性取决于亚相中的离子强度。这可以调节丰原素的表面电位,进而调节界面单分子层内的静电排斥力,以及脂肽与形成气-水界面的水分子层的相互作用。丰原素与DPPC的分子间相互作用也受到脂肽电离状态和单分子层表面压力(Pi)的强烈影响。在pH 2时,观察到两种界面成分之间具有更好的混溶性,而带负电荷的脂肽分子则与DPPC相分离。当Pi增加时,在pH 7.4观察到丰原素从界面逐渐解吸,而在pH 2时,当Pi升高到中间平台的Pi值以上时,丰原素会突然解吸。

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