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首页> 外文期刊>Analytical chemistry >Analytical investigation of the interactions between SC3 hydrophobin and lipid layers: Elaborating of nanostructured matrixes for immobilizing redox systems
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Analytical investigation of the interactions between SC3 hydrophobin and lipid layers: Elaborating of nanostructured matrixes for immobilizing redox systems

机译:分析研究SC3疏水蛋白和脂质层之间的相互作用:纳米结构化基质的固定化氧化还原系统

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摘要

Hydrophobins are highly tensioactive fungal proteins with a pronounced affinity for interfaces and a propensity for self-assembly. Recently, these proteins were shown to be useful in retaining different molecules on solid surfaces. This finding offers a possibility for developing new functional materials, while creating the necessity of further research at a deeper mechanistic level. In this work, the mechanisms governing the surface phenomena were studied using native Schizophyllum commune hydrophobin (SC3) and lipid mono- and bilayers; the soft matter systems were used to get a handle on the interactive protein/interface effects at a molecular level. The results obtained indicated that the SC3/lipid membrane interactions were adjusted by protein conformational adaptation, allowing its incorporation into lipid matrixes; the incorporation of a chelating SC3 hydrophobin (PFA-SC3) in a monoolein cubic phase yielded a biomimetic, cell-like system of Cu-II cation immobilization. This system, which is suitable for modifying electrode surface and monitoring the Cu-II/Cu-0 redox process, may be of practical interest in switching and sensing.
机译:疏水蛋白是高张力活性真菌蛋白,对界面具有明显的亲和力,并且易于自组装。最近,这些蛋白质被证明可用于在固体表面上保留不同的分子。这一发现为开发新的功能材料提供了可能性,同时又有必要在更深的机械水平上进行进一步的研究。在这项工作中,使用天然裂殖酵母公社疏水蛋白(SC3)和脂质单层和双层研究了控制表面现象的机制。软物质系统用于在分子水平上处理相互作用的蛋白质/界面效应。获得的结果表明,SC3 /脂膜相互作用是通过蛋白质构象适应性调节的,从而使其可以掺入脂质基质中。在单油精立方相中引入螯合的SC3疏水蛋白(PFA-SC3)产生了仿生的,细胞样的Cu-II阳离子固定系统。该系统适用于修饰电极表面并监控Cu-II / Cu-0氧化还原过程,可能在开关和传感方面具有实际意义。

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