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首页> 外文期刊>Beilstein journal of organic chemistry. >An improved synthesis of a fluorophosphonate–polyethylene glycol–biotin probe and its use against competitive substrates
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An improved synthesis of a fluorophosphonate–polyethylene glycol–biotin probe and its use against competitive substrates

机译:氟膦酸酯-聚乙二醇-生物素探针的改进合成方法及其在竞争底物上的应用

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摘要

The fluorophosphonate (FP) moiety attached to a biotin tag is a prototype chemical probe used to quantitatively analyze and enrich active serine hydrolases in complex proteomes in an approach called activity-based protein profiling (ABPP). In this study we have designed a novel synthetic route to a known FP probe linked by polyethylene glycol to a biotin tag (FP–PEG–biotin). Our route markedly increases the efficiency of the probe synthesis and overcomes several problems of a prior synthesis. As a proof of principle, FP–PEG–biotin was evaluated against isolated protein mixtures and different rat-tissue homogenates, showing its ability to specifically target serine hydrolases. We also assessed the ability of FP–PEG–biotin to compete with substrates that have high enzyme turnover rates. The reduced protein-band intensities resulting in these competition studies demonstrate a new application of FP-based probes seldom explored before.
机译:附着在生物素标签上的氟膦酸酯(FP)部分是一种原型化学探针,用于定量分析和富集复杂蛋白质组中的活性丝氨酸水解酶,该方法称为基于活动的蛋白质谱(ABPP)。在这项研究中,我们设计了一条新的合成途径,可以将已知的FP探针连接到聚乙二醇与生物素标签(FP–PEG–生物素)上。我们的路线显着提高了探针合成的效率,并克服了先前合成的几个问题。作为原理的证明,FP-PEG-生物素针对分离的蛋白质混合物和不同的大鼠组织匀浆进行了评估,显示了其特异性靶向丝氨酸水解酶的能力。我们还评估了FP-PEG-生物素与具有高酶转化率的底物竞争的能力。导致这些竞争研究的蛋白带强度降低,证明了以前很少探索的基于FP的探针的新应用。

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