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Near-Infrared Fluorescence Probes for Enzymes Based on Binding Affinity Modulation of Squarylium Dye Scaffold

机译:基于结合亲和力调节Squ染料支架的酶的近红外荧光探针。

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摘要

We present a novel design strategy for near-infrared (NIR) fluorescence probes utilizing dye-protein interaction as a trigger for fluorescence enhancement. The design principle involves modification of a polymethine dye with cleavable functional groups that reduce the dye's protein-binding affinity. When these functional groups are removed by specific interaction with the target enzymes, the dye's protein affinity is restored, protein binding occurs, and the dye's fluorescence is strongly enhanced. To validate this strategy, we first designed and synthesized an alkaline phosphatase (ALP) sensor by introducing phosphate into the squarylium dye scaffold; this sensor was able to detect ALP-labeled secondary antibodies in Western blotting analysis. Second, we synthesized a probe for beta-galactosidase (widely used as a reporter of gene expression) by means of beta-galactosyl substitution of the squarylium scaffold; this sensor was able to visualize beta-galactosidase activity both in vitro and in vivo. Our strategy should be applicable to obtain NIR fluorescence probes for a wide range of target enzymes.
机译:我们提出了一种新的设计策略,利用染料-蛋白质相互作用作为触发荧光增强的近红外(NIR)荧光探针。设计原理涉及用可切割的官能团修饰聚次甲基染料,从而减少染料的蛋白质结合亲和力。当这些功能基团通过与目标酶的特异性相互作用而被去除时,染料的蛋白质亲和力得以恢复,蛋白质结合发生,并且染料的荧光得到强烈增强。为了验证该策略,我们首先通过将磷酸酯引入方酸染料支架中设计并合成了碱性磷酸酶(ALP)传感器;该传感器能够在蛋白质印迹分析中检测ALP标记的二抗。其次,我们通过对squarylium支架的β-半乳糖基取代合成了β-半乳糖苷酶的探针(广泛用作基因表达的报告子)。该传感器能够在体外和体内可视化β-半乳糖苷酶的活性。我们的策略应适用于获得用于多种靶酶的NIR荧光探针。

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