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Engineering and rapid selection of a low-affinity glucose/galactose-binding protein for a glucose biosensor.

机译:用于葡萄糖生物传感器的低亲和力葡萄糖/半乳糖结合蛋白的工程设计和快速选择。

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摘要

Periplasmic expression screening is a selection technique used to enrich high-affinity proteins in Escherichia coli. We report using this screening method to rapidly select a mutated D-glucose/D-galactose-binding protein (GGBP) having low affinity to glucose. Wild-type GGBP has an equilibrium dissociation constant of 0.2 microM and mediates the transport of glucose within the periplasm of E. coli. The protein undergoes a large conformational change on binding glucose and, when labeled with an environmentally sensitive fluorophore, GGBP can relay glucose concentrations, making it of potential interest as a biosensor for diabetics. This use necessitates altering the glucose affinity of GGBP, bringing it into the physiologically relevant range for monitoring glucose in humans (1.7-33 mM). To accomplish this a focused library was constructed using structure-based site-saturation mutagenesis to randomize amino acids in the binding pocket of GGBP at or near direct H-bonding sites and screening the library within the bacterial periplasm. After selection, equilibrium dissociation constants were confirmed by glucose titration and fluorescence monitoring of purified mutants labeled site-specifically at E149C with the fluorophore IANBD (N,N'-dimethyl-N-(iodoacetyl)-N'-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)ethylene-diam ine). The screening identified a single mutation A213R that lowers GGBP glucose affinity 5000-fold to 1 mM. Computational modeling suggested the large decrease in affinity was accomplished by the arginine side chain perturbing H-bonding and increasing the entropic barrier to the closed conformation. Overall, these experiments demonstrate the ability of structure-based site-saturation mutagenesis and periplasmic expression screening to discover low-affinity GGBP mutants having potential utility for measuring glucose in humans.
机译:周质表达筛选是一种用于富集大肠杆菌中高亲和力蛋白的选择技术。我们报告使用这种筛选方法来快速选择对葡萄糖具有低亲和力的突变的D-葡萄糖/ D-半乳糖结合蛋白(GGBP)。野生型GGBP具有0.2 microM的平衡解离常数,并介导葡萄糖在大肠杆菌周质内的运输。该蛋白质在结合葡萄糖上经历了很大的构象变化,当用环境敏感的荧光团标记时,GGBP可以传递葡萄糖浓度,使其成为糖尿病生物传感器的潜在兴趣。这种用途需要改变GGBP的葡萄糖亲和力,使其进入生理相关范围以监测人体内的葡萄糖(1.7-33 mM)。为了实现这一点,使用基于结构的位点饱和诱变来构建聚焦文库,以随机化直接H键合位点处或附近的GGBP结合口袋中的氨基酸,并筛选细菌周质内的文库。选择后,通过葡萄糖滴定和荧光监测IAN149(N,N'-二甲基-N-(碘乙酰基)-N'-(7-硝基苯-2)特异性标记在E149C上的纯化突变体,确认平衡解离常数-oxa-1,3-diazol-4-yl)ethylene-diamine)。筛选确定了单个突变A213R,它将GGBP葡萄糖亲和力降低了5000倍至1 mM。计算模型表明,亲和力的大幅下降是通过精氨酸侧链扰动H键并增加对封闭构象的熵垒实现的。总的来说,这些实验证明了基于结构的位点饱和诱变和周质表达筛选发现低亲和力GGBP突变体的能力,这些突变体具有测量人体葡萄糖的潜力。

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