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应用鸡尾酒法筛选细胞色素P450 BM3文库的代谢活性和多样性。

Application of a cocktail approach to screen cytochrome P450 BM3 libraries for metabolic activity and diversity.

作者信息

Reinen Jelle, Postma Geert, Tump Cornelis, Bloemberg Tom, Engel Jasper, Vermeulen Nico P E, Commandeur Jan N M, Honing Maarten

机构信息

Division of Molecular Toxicology, Amsterdam Institute for Molecules Medicines and Systems (AIMMS), Faculty of Sciences, VU University Amsterdam, De Boelelaan 1083, 1081 HV, Amsterdam, The Netherlands.

Institute for Molecules and Materials, Analytical Chemistry, Radboud University Nijmegen, P.O. Box 9010, 6500 GL, Nijmegen, The Netherlands.

出版信息

Anal Bioanal Chem. 2016 Feb;408(5):1425-43. doi: 10.1007/s00216-015-9241-x. Epub 2016 Jan 11.

Abstract

In the present study, the validity of using a cocktail screening method in combination with a chemometrical data mining approach to evaluate metabolic activity and diversity of drug-metabolizing bacterial Cytochrome P450 (CYP) BM3 mutants was investigated. In addition, the concept of utilizing an in-house-developed library of CYP BM3 mutants as a unique biocatalytic synthetic tool to support medicinal chemistry was evaluated. Metabolic efficiency of the mutant library towards a selection of CYP model substrates, being amitriptyline (AMI), buspirone (BUS), coumarine (COU), dextromethorphan (DEX), diclofenac (DIC) and norethisterone (NET), was investigated. First, metabolic activity of a selection of CYP BM3 mutants was screened against AMI and BUS. Subsequently, for a single CYP BM3 mutant, the effect of co-administration of multiple drugs on the metabolic activity and diversity towards AMI and BUS was investigated. Finally, a cocktail of AMI, BUS, COU, DEX, DIC and NET was screened against the whole in-house CYP BM3 library. Different validated quantitative and qualitative (U)HPLC-MS/MS-based analytical methods were applied to screen for substrate depletion and targeted product formation, followed by a more in-depth screen for metabolic diversity. A chemometrical approach was used to mine all data to search for unique metabolic properties of the mutants and allow classification of the mutants. The latter would open the possibility of obtaining a more in-depth mechanistic understanding of the metabolites. The presented method is the first MS-based method to screen CYP BM3 mutant libraries for diversity in combination with a chemometrical approach to interpret results and visualize differences between the tested mutants.

摘要

在本研究中,研究了使用鸡尾酒筛选方法结合化学计量学数据挖掘方法来评估药物代谢细菌细胞色素P450(CYP)BM3突变体的代谢活性和多样性的有效性。此外,还评估了利用内部开发的CYP BM3突变体文库作为支持药物化学的独特生物催化合成工具的概念。研究了突变体文库对一系列CYP模型底物(即阿米替林(AMI)、丁螺环酮(BUS)、香豆素(COU)、右美沙芬(DEX)、双氯芬酸(DIC)和炔诺酮(NET))的代谢效率。首先,针对AMI和BUS筛选了一系列CYP BM3突变体的代谢活性。随后,对于单个CYP BM3突变体,研究了多种药物联合给药对其针对AMI和BUS的代谢活性和多样性的影响。最后,针对整个内部CYP BM3文库筛选了由AMI、BUS、COU、DEX、DIC和NET组成的鸡尾酒。应用了不同的经过验证的基于(超)高效液相色谱-串联质谱的定量和定性分析方法来筛选底物消耗和目标产物形成,随后对代谢多样性进行更深入的筛选。使用化学计量学方法挖掘所有数据,以寻找突变体的独特代谢特性并对突变体进行分类。后者将为更深入地了解代谢物的作用机制提供可能性。所提出的方法是第一种基于质谱的方法,用于结合化学计量学方法筛选CYP BM3突变体文库的多样性,以解释结果并可视化测试突变体之间的差异。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ab6e/4723632/43cb6820addc/216_2015_9241_Figa_HTML.jpg

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