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首页> 外文期刊>Biotechnology Progress >Quantitative Analyses of Individual Sugars in Mixture Using FRET-Based Biosensors
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Quantitative Analyses of Individual Sugars in Mixture Using FRET-Based Biosensors

机译:使用基于FRET的生物传感器对混合物中的单个糖进行定量分析

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摘要

Molecular biosensors were developed and applied to measure individual sugars in biological mixtures such as bacterial culture broths. As the sensing units, four sugar-binding proteins (SBPs for allose, arabinose, ribose, and glucose) were selected from the Escherichia coli genome and connected to a cyan fluorescent protein and yellow fluorescent protein via dipeptide linkers (CFP-L-SBP-YFP). The putative sensors were randomized in the linker region (L) and then investigated with regard to the intensity of fluorescence resonance energy transfer on the binding of the respective sugars. As a result, four representatives were selected from each library and examined for their specificity using 16 available sugars. The apparent dissociation constants of the allose, arabinose, ribose, and glucose sensors were estimated to be 0.35, 0.36, 0.17, and 0.18 μM. Finally, the sugar sensors were applied to monitor the consumption rate of individual sugars in an E. coli culture broth. The individual sugar profiles exhibited a good correlation with those obtained using an HPLC method, confirming that the biosensors offer a rapid and easy-to-use method for monitoring individual sugars in mixed compositions.
机译:开发了分子生物传感器,并将其用于测量生物混合物(例如细菌培养液)中的单个糖。作为传感单位,从大肠杆菌基因组中选择了四个糖结合蛋白(用于阿洛糖,阿拉伯糖,核糖和葡萄糖的SBP),并通过二肽接头(CFP-L-SBP- YFP)。推定的传感器在连接子区域(L)中随机分组,然后研究相应糖结合后荧光共振能量转移的强度。结果,从每个文库中选择了四个代表,并使用16种可用的糖检查了它们的特异性。艾洛糖,阿拉伯糖,核糖和葡萄糖传感器的表观解离常数估计为0.35、0.36、0.17和0.18μM。最后,将糖传感器应用于监测大肠杆菌培养液中单个糖的消耗率。单个糖特征与使用HPLC方法获得的糖特征显示出良好的相关性,从而证实了生物传感器提供了一种快速且易于使用的方法来监测混合组合物中的单个糖。

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