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Osmolyte-Like Stabilizing Effects of Low GdnHCl Concentrations on d-Glucose/d-Galactose-Binding Protein

机译:低GdnHCl浓度对d-葡萄糖/ d-半乳糖结合蛋白的渗透压样稳定作用

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摘要

The ability of d-glucose/d-galactose-binding protein (GGBP) to reversibly interact with its ligands, glucose and galactose, makes this protein an attractive candidate for sensing elements of glucose biosensors. This potential is largely responsible for attracting researchers to study the conformational properties of this protein. Previously, we showed that an increase in the fluorescence intensity of the fluorescent dye 6-bromoacetyl-2-dimetylaminonaphtalene (BADAN) is linked to the holo-form of the GGBP/H152C mutant in solutions containing sub-denaturing concentrations of guanidine hydrochloride (GdnHCl). It was hypothesized that low GdnHCl concentrations might lead to compaction of the protein, thereby facilitating ligand binding. In this work, we utilize BADAN fluorescence spectroscopy, intrinsic protein UV fluorescence spectroscopy, and isothermal titration calorimetry (ITC) to show that the sub-denaturing GdnHCl concentrations possess osmolyte-like stabilizing effects on the structural dynamics, conformational stability, and functional activity of GGBP/H152C and the wild type of this protein (wtGGBP). Our data are consistent with the model where low GdnHCl concentrations promote a shift in the dynamic distribution of the protein molecules toward a conformational ensemble enriched in molecules with a tighter structure and a more closed conformation. This promotes the increase in the configurational complementarity between the protein and glucose molecules that leads to the increase in glucose affinity in both GGBP/H152C and wtGGBP.
机译:d-葡萄糖/ d-半乳糖结合蛋白(GGBP)与其配体,葡萄糖和半乳糖可逆相互作用的能力使该蛋白成为葡萄糖生物传感器传感元件的有吸引力的候选者。这种潜力在很大程度上吸引了研究人员来研究这种蛋白质的构象特性。以前,我们表明荧光染料6-溴乙酰基-2-二甲氨基氨基萘(BADAN)的荧光强度增加与含有亚变性浓度的盐酸胍(GdnHCl)的溶液中GGBP / H152C突变体的完整形式有关。 )。假设低的GdnHCl浓度可能导致蛋白质紧实,从而促进配体结合。在这项工作中,我们利用BADAN荧光光谱法,内在蛋白质UV荧光光谱法和等温滴定热法(ITC)来证明亚变性GdnHCl浓度对结构动力学,构象稳定性和功能活性具有渗透压样稳定作用。 GGBP / H152C和该蛋白的野生型(wtGGBP)。我们的数据与低GdnHCl浓度促进蛋白质分子动态分布向富含结构紧密且构象更紧密的分子的构象集合移动的模型一致。这促进了蛋白质和葡萄糖分子之间构型互补性的增加,这导致了GGBP / H152C和wtGGBP中葡萄糖亲和力的增加。

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