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A practical strategy to design and develop an isoform-specific fluorescent probe for a target enzyme: CYP1A1 as a case study

机译:设计和开发针对目标酶的同工型特异性荧光探针的实用策略:CYP1A1作为案例研究

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摘要

The development of isoform-specific probe(s) for a target enzyme with multiple homologs is always challenging. Herein, a practical strategy was used to design and develop an isoform-specific probe for CYP1A1, a key cytochrome P450 isoenzyme involved in xenobiotic metabolism and bioactivation. On the basis of the subtle differences in 3D structure and substrate preference between CYP1A1 and its homolog CYP1A2, we proposed that it was possible to design a CYP1A1-specific probe via local modification of the reaction site on known CYP1A substrates. To validate this hypothesis, 4-hydroxy-1,8-naphthalimide (>HN) was selected as the basic fluorophore due to its excellent optical properties, while a series of O-alkylated >HN derivatives were prepared to evaluate their specificity towards CYP1A1. Our results revealed that the introduction of a chloroethyl to >HN could get the best isoform selectivity towards CYP1A1 over other CYPs including CYP1A2. The newly developed probe >NBCeN exhibited excellent specificity, high sensitivity, and a ratiometric fluorescence response following CYP1A1-catalyzed O-dechloroethylation. >NBCeN was successfully used to real-time monitor the activity of CYP1A1 in complex biological samples and to rapidly screen CYP1A1 modulators in living systems. >NBCeN could also be used for two-photon imaging of intracellular CYP1A1 in living cells and tissues with high ratiometric imaging resolution and deep tissue penetration. All these findings demonstrated that local modification of non-specific substrates was a practical strategy to develop an isoform-specific probe for a target isoenzyme, while >NBCeN could serve as a specific imaging tool to explore the biological functions of CYP1A1 in complex biological systems.
机译:具有多种同源物的靶酶的同工型特异性探针的开发一直是具有挑战性的。在本文中,一种实用的策略用于设计和开发CYP1A1的同工型特异性探针,CYP1A1是参与异源生物代谢和生物激活的关键细胞色素P450同工酶。基于CYP1A1及其同系物CYP1A2在3D结构和底物偏好方面的细微差别,我们建议可以通过对已知CYP1A底物的反应位点进行局部修饰来设计CYP1A1特异性探针。为了验证这一假设,选择了4-羟基-1,8-萘二甲酰亚胺(> HN )作为基本荧光团,因为它具有出色的光学性能,而一系列O-烷基化的> HN 衍生物以评估其对CYP1A1的特异性。我们的结果表明,向> HN 中引入氯乙基可以获得优于其他CYP包括CYP1A2的对CYP1A1最佳的同工型选择性。新开发的探针> NBCeN 在CYP1A1催化的O-脱氯乙基化反应后表现出优异的特异性,高灵敏度和成比例的荧光响应。 > NBCeN 已成功用于实时监测复杂生物样品中CYP1A1的活性并快速筛选生物系统中的CYP1A1调节剂。 > NBCeN 还可以用于活细胞和组织中细胞内CYP1A1的双光子成像,具有高比例成像分辨率和深层组织穿透性。所有这些发现表明,非特异性底物的局部修饰是开发针对靶同工酶的同工型特异性探针的实用策略,而> NBCeN 可以作为一种特定的成像工具来探索其生物学功能。 CYP1A1在复杂的生物系统中。

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