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用于活细胞中羧肽酶 1 高选择性检测的长波长荧光探针的合理设计。

Rational Design of a Long-Wavelength Fluorescent Probe for Highly Selective Sensing of Carboxylesterase 1 in Living Systems.

机构信息

State Key Laboratory of Fine Chemicals , Dalian University of Technology , Dalian , 116024 , China.

School of Life Science and Medicine , Dalian University of Technology , Panjin , 124221 , China.

出版信息

Anal Chem. 2019 May 7;91(9):5638-5645. doi: 10.1021/acs.analchem.8b05417. Epub 2019 Apr 19.

Abstract

Rational design of practical probes with excellent specificity and improved optical properties for a particular enzyme is always a big challenge. Herein, a practical and highly specific fluorescent probe for carboxylesterase 1 (CES1) was rationally designed using meso-carboxyl-BODIPY as the basic fluorophore based on the substrate preference and catalytic properties of CES1. Following molecular docking-based virtual screening combined with reaction phenotyping-based experimental screening, we found that MMB (probe 7) exhibited the optimal combination of sensitivity and specificity toward human CES1 in contrast to other ester derivatives. Under physiological conditions, MMB could be readily hydrolyzed by CES1 and release MCB; such biotransformation brought great changes in the electronic properties at the meso position of the fluorophore and triggered a dramatic increase in fluorescence emission around 595 nm. Moreover, MMB was cell membrane permeable and was successfully applied to monitor the real activities of CES1 in various biological samples including living cells, tissue slices, organs, and zebrafish. In summary, this study showed a good example for constructing specific fluorescent probe(s) for a target enzyme and also provided a practical and sensitive tool for real-time sensing of CES1 activities in complicated biological samples. All these findings would strongly facilitate high-throughput screening of CES1 modulators and the studies on CES1-associated physiological and pathological processes.

摘要

理性设计具有优异特异性和改良光学性质的实用探针,用于特定酶一直是一个巨大的挑战。在此,基于羧酯酶 1(CES1)的底物偏好和催化特性,我们使用间羧基-BODIPY 作为基本荧光团,理性设计了一种实用且高度特异的荧光探针用于 CES1。通过基于分子对接的虚拟筛选和基于反应表型的实验筛选相结合,我们发现 MMB(探针 7)在对人 CES1 的敏感性和特异性方面表现出最佳的组合,与其他酯衍生物相比。在生理条件下,MMB 可被 CES1 轻易水解并释放 MCB;这种生物转化使荧光团中位的电子性质发生了巨大变化,引发了在 595nm 左右的荧光发射急剧增加。此外,MMB 具有细胞膜通透性,并成功应用于监测包括活细胞、组织切片、器官和斑马鱼在内的各种生物样品中 CES1 的真实活性。总之,本研究为构建针对目标酶的特异性荧光探针提供了一个很好的范例,并为在复杂生物样品中实时感测 CES1 活性提供了一种实用且灵敏的工具。所有这些发现将有力地促进 CES1 调节剂的高通量筛选以及与 CES1 相关的生理和病理过程的研究。

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