S-layer-supported lipid membranes

Bernhard Schuster, Uwe B Sleytr
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引用次数: 61

Abstract

Many prokaryotic organisms (archaea and bacteria) are covered by a regularly ordered surface layer (S-layer) as the outermost cell wall component. S-layers are built up of a single protein or glycoprotein species and represent the simplest biological membrane developed during evolution. Pores in S-layers are of regular size and morphology, and functional groups on the protein lattice are aligned in well-defined positions and orientations. Due to the high degree of structural regularity S-layers represent unique systems for studying the structure, morphogenesis, and function of layered supramolecular assemblies. Isolated S-layer subunits of numerous organisms are able to assemble into monomolecular arrays either in suspension, at air/water interfaces, on planar mono- and bilayer lipid films, on liposomes and on solid supports (e.g. silicon wafers). Detailed studies on composite S-layer/lipid structures have been performed with Langmuir films, freestanding bilayer lipid membranes, solid supported lipid membranes, and liposomes. Lipid molecules in planar films and liposomes interact via their head groups with defined domains on the S-layer lattice. Electrostatic interactions are the most prevalent forces. The hydrophobic chains of the lipid monolayers are almost unaffected by the attachment of the S-layer and no impact on the hydrophobic thickness of the membranes has been observed. Upon crystallization of a coherent S-layer lattice on planar and vesicular lipid membranes, an increase in molecular order is observed, which is reflected in a decrease of the membrane tension and an enhanced mobility of probe molecules within an S-layer-supported bilayer. Thus, the terminology ‘semifluid membrane’ has been introduced for describing S-layer-supported lipid membranes. The most important feature of composite S-layer/lipid membranes is an enhanced stability in comparison to unsupported membranes.

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s层支撑的脂质膜
许多原核生物(古生菌和细菌)的细胞壁最外层都覆盖着一层规则有序的表层(s层)。s层是由单个蛋白质或糖蛋白物种组成的,代表了进化过程中最简单的生物膜。s层孔隙的大小和形态规则,蛋白质晶格上的官能团排列在明确的位置和方向上。由于其高度的结构规定性,s层是研究层状超分子组装体结构、形态发生和功能的独特体系。许多生物的分离s层亚基能够在悬浮液、空气/水界面、平面单层和双层脂质膜、脂质体和固体载体(如硅片)上组装成单分子阵列。对复合s层/脂质结构进行了详细的研究,包括Langmuir膜、独立双层脂质膜、固体支撑脂质膜和脂质体。平面膜中的脂质分子和脂质体通过其头部基团与s层晶格上定义的结构域相互作用。静电相互作用是最普遍的力。脂质单层的疏水链几乎不受s层附着的影响,并且对膜的疏水厚度没有影响。在平面和泡状脂质膜上形成相干s层晶格后,观察到分子秩序的增加,这反映在膜张力的降低和s层支持的双分子层内探针分子的迁移性增强上。因此,引入了术语“半流体膜”来描述s层支持的脂质膜。与无支撑膜相比,复合s层/脂质膜的最重要特征是稳定性增强。
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Subject Index Author Index Core and periphery functionalized dendrimers for transition metal catalysis; a covalent and a non-covalent approach Dendritic supports in organic synthesis Peptide dendrimers: applications and synthesis
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