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利用工程化葡萄糖/半乳糖结合蛋白基于荧光的葡萄糖传感:荧光共振能量转移与环境敏感染料标记策略的比较

Fluorescence-based sensing of glucose using engineered glucose/galactose-binding protein: a comparison of fluorescence resonance energy transfer and environmentally sensitive dye labelling strategies.

作者信息

Khan Faaizah, Gnudi Luigi, Pickup John C

机构信息

Metabolic Unit, King's College London School of Medicine, Guy's Hospital, London SE1 9RT, UK.

出版信息

Biochem Biophys Res Commun. 2008 Jan 4;365(1):102-6. doi: 10.1016/j.bbrc.2007.10.129. Epub 2007 Oct 30.

Abstract

Fluorescence-based glucose sensors using glucose-binding protein (GBP) as the receptor have employed fluorescence resonance energy transfer (FRET) and environmentally sensitive dyes, but with widely varying sensitivity. We therefore compared signal changes in (a) a FRET system constructed by transglutaminase-mediated N-terminal attachment of Alexa Fluor 488/555 as donor and QSY 7 as acceptor at Cys 152 or 182 mutations with (b) GBP labelled with the environmentally sensitive dye badan at C152 or 182. Both FRET systems had a small maximal fluorescence change at saturating glucose (7% and 16%), badan attached at C152 was associated with a 300% maximal fluorescence increase with glucose, though with badan at C182 there was no change. We conclude that glucose sensing based on GBP and FRET does not produce a larger enough signal change for clinical use; both the nature of the environmentally sensitive dye and its site of conjugation seem important for maximum signal change; badan-GBP152C has a large glucose-induced fluorescence change, suitable for development as a glucose sensor.

摘要

以葡萄糖结合蛋白(GBP)作为受体的基于荧光的葡萄糖传感器采用了荧光共振能量转移(FRET)和对环境敏感的染料,但灵敏度差异很大。因此,我们比较了以下两种情况的信号变化:(a)通过转谷氨酰胺酶介导,将Alexa Fluor 488/555作为供体、QSY 7作为受体在半胱氨酸152或182突变处进行N端连接构建的FRET系统,与(b)在C152或182处用对环境敏感的染料巴丹标记的GBP。两种FRET系统在饱和葡萄糖时的最大荧光变化都很小(分别为7%和16%),在C152处连接巴丹的GBP随着葡萄糖的加入最大荧光增加300%,而在C182处连接巴丹则无变化。我们得出结论,基于GBP和FRET的葡萄糖传感产生的信号变化不够大,无法用于临床;对环境敏感的染料的性质及其缀合位点对于最大信号变化似乎都很重要;巴丹-GBP152C具有较大的葡萄糖诱导荧光变化,适合开发为葡萄糖传感器。

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