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Binding and signaling of surface-immobilized reagentless fluorescent biosensors derived from periplasmic binding proteins

机译:源自周质结合蛋白的表面固定无试剂荧光生物传感器的结合和信号传导

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摘要

Development of biosensor devices typically requires incorporation of the molecular recognition element into a solid surface for interfacing with a signal detector. One approach is to immobilize the signal transducing protein directly on a solid surface. Here we compare the effects of two direct immobilization methods on ligand binding, kinetics, and signal transduction of reagentless fluorescent biosensors based on engineered periplasmic binding proteins. We used thermostable ribose and glucose binding proteins cloned from Thermoanaerobacter tengcongensis and Thermotoga maritima, respectively. To test the behavior of these proteins in semispecifically oriented layers, we covalently modified lysine residues with biotin or sulfhydryl functions, and attached the conjugates to plastic surfaces derivatized with streptavidin or maleimide, respectively. The immobilized proteins retained ligand binding and signal transduction but with adversely affected affinities and signal amplitudes for the thiolated, but not the biotinylated, proteins. We also immobilized these proteins in a more specifically oriented layer to maleimide-derivatized plates using a His2Cys2 zinc finger domain fused at either their N or C termini. Proteins immobilized this way either retained, or displayed enhanced, ligand affinity and signal amplitude. In all cases tested ligand binding by immobilized proteins is reversible, as demonstrated by several iterations of ligand loading and elution. The kinetics of ligand exchange with the immobilized proteins are on the order of seconds.
机译:生物传感器装置的开发通常需要将分子识别元件结合到用于与信号检测器接口的固体表面中。一种方法是将信号转导蛋白直接固定在固体表面上。在这里,我们比较两种直接固定方法对基于工程周质结合蛋白的无试剂荧光生物传感器的配体结合,动力学和信号转导的影响。我们使用了分别从腾腾嗜热厌氧杆菌和海生热球菌克隆的热稳定核糖和葡萄糖结合蛋白。为了测试这些蛋白质在半特异性定向层中的行为,我们对具有生物素或巯基功能的赖氨酸残基进行了共价修饰,并将缀合物分别附着于链霉亲和素或马来酰亚胺衍生的塑料表面上。固定化的蛋白质保留了配体结合和信号转导,但对硫醇化蛋白(而非生物素化蛋白)的亲和力和信号幅度产生了不利影响。我们还使用在其N或C末端融合的His2Cys2锌指结构域将这些蛋白质固定在更特定定向的层中,以马来酰亚胺衍生的板。以这种方式固定的蛋白质保留或显示出增强的配体亲和力和信号幅度。在所有情况下,固定配体结合的测试配体结合都是可逆的,如配体加载和洗脱的多次迭代所证明。与固定的蛋白质进行配体交换的动力学约为数秒。

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