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首页> 外文期刊>Engineering in Life Sciences >Extraction and long-term storage of S-layer proteins and flagella from Lysinibacillus sphaericus NCTC 9602: Building blocks for nanotechnology
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Extraction and long-term storage of S-layer proteins and flagella from Lysinibacillus sphaericus NCTC 9602: Building blocks for nanotechnology

机译:球形鳞球菌NCTC 9602的S层蛋白和鞭毛的提取和长期保存:纳米技术的基础

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Self-assembling surface layer (SL) proteins of bacteria have been widely studied, in particular their use as molecularly defined, 2D coatings of technical surfaces. An important prerequisite is the availability of a sufficient amount of protein. However, a detailed and optimized protocol for the complete SL extraction is so far not available. Here, we describe the complete purification and reassembly procedure of an SL protein of Lysinibacillus sphaericus NCTC 9602, starting from the cultivation of cells, the preparation and purification of SL proteins up to the long-term storage and in vitro self-assembly of the proteins. All crucial steps of the procedure are assessed by different microscopic techniques, such as light microscopy, atomic force microscopy, and scanning electron microscopy as well as by SDS-PAGE as a biochemical method. We demonstrate that storage of the protein in the presence of sodium azide or upon lyophilization allows the preservation of the self-assembly properties for at least 9 years. Additionally, we describe a method allowing the extraction of intact flagella with lengths in the range up to 4 mu m. Flagella may have applications in bio-nanotechnology, for example as templates for metallic nanowires.
机译:细菌的自组装表面层(SL)蛋白已得到广泛研究,特别是将其用作技术表面的分子定义2D涂层。一个重要的前提是要有足够数量的蛋白质。但是,到目前为止,还没有用于完整SL提取的详细且优化的协议。在这里,我们描述球形芽孢杆菌NCTC 9602的SL蛋白的完整纯化和重组程序,从细胞培养,SL蛋白的制备和纯化直至蛋白的长期存储和体外自组装。该过程的所有关键步骤均通过不同的显微镜技术进行评估,例如光学显微镜,原子力显微镜和扫描电子显微镜,以及通过SDS-PAGE作为生化方法。我们证明了在叠氮化钠存在下或冻干后蛋白质的存储允许至少9年的自组装特性的保存。另外,我们描述了一种允许提取完整鞭毛的方法,该鞭毛的长度可达4微米。鞭毛可以在生物纳米技术中应用,例如作为金属纳米线的模板。

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