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Site-specific mutants of carbonic anhydrase for fluorescence energy-transfer-based metal-ion biosensing

机译:用于荧光能量转移的金属离子生物传感碳酸酐酶的碳酸酐酶特异性突变体

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In order to gain wavelength and analyte flexibility, we have recently altered the transduction approach of our fluorescence-based biosensor. Briefly, binding of metal ions such as zinc to the active site of carbonic anhydrase is transduced by metal-dependent binding of a colored inhibitor to a fluorescent derivative of the enzyme; in the absense of metal the inhibitor does not bind and the label fluorescence is unquenched, but at higher metal concentrations the inhibitor binds, energy transfer occurs with moderate efficiency and the fluorescent label exhibits reduced intensity and lifetime. Inasmush as Forster energy transfer is distance dependent the position of the fluorescent label on the surface of the enzyme has some impact on the performance of the sensor. We designed, produced, and expressed site-selective mutants of carbonic anhydrase which could be unambiguously derivatized with suitable fluorescent labels, and which gave much improved responses to zinc ion compared with randomly derivatized wild type enzyme.
机译:为了获得波长和分析物的灵活性,我们最近改变了基于荧光的生物传感器的转导方法。简而言之,通过有色抑制剂对酶的荧光衍生物的金属依赖性结合将金属离子如锌与碳酸酐酸脱水酶的活性位点的结合转导;在金属的缺失中,抑制剂不结合并且标记荧光未被封闭,但是在较高的金属浓度下,抑制剂结合,通过中等效率发生能量传递,并且荧光标记表现出降低的强度和寿命。初世的是福斯特能量转移是距离依赖性荧光标签在酶表面上的位置对传感器的性能产生了一些影响。我们设计了碳酸酐酶的基地选择性突变体,其可以用适当的荧光标记明确地衍生化,并且与随机衍生的野生型酶相比,对锌离子进行了大量改善的反应。

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