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Protein-DNA double and triple layers: Interaction of biotinylated DNA fragments with solid supported streptavidin layers

机译:蛋白质-DNA双层和三层:生物素化的DNA片段与固体支持的链霉亲和素层的相互作用

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The specific interaction of streptavidin with biotinylated lipids at the air-water interface leads to a formation of optically anisotropic two-dimensional streptavidin (2-D) crystals, where two of the original four biotin-binding sites remain free. These assembled streptavidin matrixes were used as a template for docking of double-stranded oligonucleotides biotinylated at a terminal or a centered position. A biotinylated lipid monolayer was deposited on an electrode of a quartz crystal microbalance (QCM), and docking processes of the protein and the oligonucleotides were detected as frequency changes related by mass changes on the QCM. The bis-biotinylated double-stranded oligonucleotides bound to the primary streptavidin layers made it possible to engineer protein-DNA-protein triple layers. Hydrolysis by a restriction endonuclease indicates that the biotinylated DNA bound to the streptavidin layers remains bioactive. [References: 37]
机译:链霉亲和素与生物素化脂质在空气-水界面处的特异性相互作用导致形成光学各向异性的二维链霉亲和素(2-D)晶体,其中原始的四个生物素结合位点中的两个保持自由。这些组装的链霉亲和素基质用作在末端或居中位置对接生物素化的双链寡核苷酸的模板。将生物素化的脂质单层沉积在石英晶体微量天平(QCM)的电极上,并检测蛋白质和寡核苷酸的对接过程,作为与质量变化有关的频率变化。绑定到主要的链霉亲和素层的双生物素化的双链寡核苷酸使得工程改造蛋白质-DNA-蛋白质三层成为可能。限制性核酸内切酶的水解表明与链霉亲和素层结合的生物素化的DNA仍然具有生物活性。 [参考:37]

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