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首页> 外文期刊>Journal of Diabetes Science and Technology >Fluorescence Resonance Energy Transfer Glucose Sensor from Site-Specific Dual Labeling of Glucose/Galactose Binding Protein Using Ligand Protection
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Fluorescence Resonance Energy Transfer Glucose Sensor from Site-Specific Dual Labeling of Glucose/Galactose Binding Protein Using Ligand Protection

机译:荧光共振能量转移葡萄糖传感器通过使用配体保护对葡萄糖/半乳糖结合蛋白进行位点双重标记

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Background: Site-selective modification of proteins at two separate locations using two different reagents is highly desirable for biosensor applications employing fluorescence resonance energy transfer (FRET), but few strategies are available for such modification. To address this challenge, sequential selective modification of two cysteines in glucose/galactose binding protein (GGBP) was demonstrated using a technique we call “ligand protection.” Method: In this technique, two cysteines were introduced in GGBP and one cysteine is rendered inaccessible by the presence of glucose, thus allowing sequential attachment of two different thiol-reactive reagents. The mutant E149C/A213C/L238S was first labeled at E149C in the presence of the ligand glucose. Following dialysis and removal of glucose, the protein was labeled with a second dye, either Texas Red (TR) C5 bromoacetamide or TR C2 maleimide, at the second site, A213C. Results: Changes in glucose-dependent fluorescence were observed that were consistent with FRET between the nitrobenzoxadiazole and TR fluorophores. Comparison of models and spectroscopic properties of the C2 and C5 TR FRET constructs suggests the greater rigidity of the C2 linker provides more efficient FRET. Conclusions: The ligand protection strategy provides a simple method for labeling GGBP with two different fluorophores to construct FRET-based glucose sensors with glucose affinity within the human physiological glucose range (1–30 mM). This general strategy may also have broad utility for other protein-labeling applications.
机译:背景:对于使用荧光共振能量转移(FRET)的生物传感器应用,非常需要使用两种不同的试剂在两个不同位置对蛋白质进行位点选择性修饰,但是很少有策略可用于这种修饰。为了解决这一挑战,我们使用一种称为“配体保护”的技术证明了葡萄糖/半乳糖结合蛋白(GGBP)中两个半胱氨酸的顺序选择性修饰。方法:在这项技术中,在GGBP中引入了两个半胱氨酸,由于葡萄糖的存在,一个半胱氨酸变得难以接近,因此可以依次连接两种不同的硫醇反应试剂。首先在配体葡萄糖存在下在E149C标记突变体E149C / A213C / L238S。透析并除去葡萄糖后,在第二个位置A213C上用第二种染料(德克萨斯红(TR)C5溴乙酰胺或TR C2马来酰亚胺)标记蛋白质。结果:观察到葡萄糖依赖性荧光的变化与硝基苯并恶二唑和TR荧光团之间的FRET一致。 C2和C5 TR FRET结构的模型和光谱性质的比较表明,C2连接子的刚性更高,可提供更有效的FRET。结论:配体保护策略为使用两种不同的荧光团标记GGBP提供了一种简单的方法,以构建在人体生理葡萄糖范围(1–30 mM)中具有葡萄糖亲和力的基于FRET的葡萄糖传感器。该一般策略对于其他蛋白质标记应用也可能具有广泛的用途。

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