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以BODIPY为基本荧光团的羧酸酯酶1荧光探针底物的设计与开发

[Design and development of fluorescent probe substrates for carboxylesterase 1 using BODIPY as the basic fluorophore].

作者信息

Ding Le-le, Tian Zhen-hao, Hou Jie, Weng Zi-miao, Cui Jing-nan, Yang Ling, Ge Guang-bo

出版信息

Yao Xue Xue Bao. 2017 Jan;52(1):58-65.

Abstract

Carboxylesterase 1 (CE1) is an important serine hydrolase in mammals, which involved in the hydrolysis of a variety of compounds (endogenous substrates like cholesterol and xenobiotic compounds like ester-contain drugs and pesticides). This study aimed to design and develop the fluorescent probe substrates for human carboxylesterase 1 (hCE1), on the basis of the structural features of hCE1 preferred substrates. Four carboxylic esters deriving from BODIPY-8-carboxylic acid were designed and synthesized. After then, reaction phenotyping assays and chemical inhibition assays were used to evaluate the selectivity of these four ester derivatives towards hCE1. Our results clearly demonstrated that the substrate specificity of these ester substrates towards hCE1 would be improved with the decrease of the alcohol group on BODIPY-8-carboxylesters, while BODIPY-8-carboxylesters with small alcohol groups including methyl (BCM) and ethyl (BCE) esters could serve as the ideal probe substrates for hCE1. Given that BCM exhibit rapid hydrolytic rate in hCE1, we further investigate the enzymatic kinetics of this fluorescent probe substrate in both human liver microsomes (HLM) and recombinant hCE1, as well as to explore its potential application in high-throughput screening of hCE1 inhibitors by using HLM as enzyme source. The results showed that the kinetic behaviors and the affinity of BCM in HLM is much closed to those in recombinant hCE1, implying that hCE1 played the key roles in BCM hydrolysis in HLM. Furthermore, the inhibition study demonstrated that BCM could be used for rapid screening and characterization of hCE1 inhibitors, by using HLM to replace recombinant hCE1 as enzyme source.

摘要

羧酸酯酶1(CE1)是哺乳动物中一种重要的丝氨酸水解酶,参与多种化合物的水解(如胆固醇等内源性底物以及含酯类药物和农药等外源性化合物)。本研究旨在基于人羧酸酯酶1(hCE1)偏好底物的结构特征,设计并开发用于hCE1的荧光探针底物。设计并合成了四种源自BODIPY - 8 - 羧酸的羧酸酯。然后,通过反应表型分析和化学抑制分析来评估这四种酯衍生物对hCE1的选择性。我们的结果清楚地表明,随着BODIPY - 8 - 羧酸酯上醇基团的减少,这些酯底物对hCE1的底物特异性会提高,而含小醇基团的BODIPY - 8 - 羧酸酯,包括甲酯(BCM)和乙酯(BCE),可作为hCE1的理想探针底物。鉴于BCM在hCE1中表现出快速的水解速率,我们进一步研究了这种荧光探针底物在人肝微粒体(HLM)和重组hCE1中的酶动力学,以及以HLM作为酶源探索其在高通量筛选hCE1抑制剂中的潜在应用。结果表明,BCM在HLM中的动力学行为和亲和力与在重组hCE1中的非常接近,这意味着hCE1在HLM中BCM的水解中起关键作用。此外,抑制研究表明,通过使用HLM替代重组hCE1作为酶源,BCM可用于hCE1抑制剂的快速筛选和表征。

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