Biocatalysis using Thermostable Cytochrome P450 Enzymes in Bacterial Membranes - Comparison of Metabolic Pathways with Human Liver Microsomes and Recombinant Human Enzymes S

被引:1
作者
Jurva, Ulrik [1 ]
Sandinge, Ann-Sofie [1 ]
Baek, Jong Min [2 ]
Avanthay, Mickael [3 ]
Thomson, Raine E. S. [2 ]
D'Cunha, Stephlina A. [1 ]
Andersson, Shalini [3 ]
Hayes, Martin A. [3 ]
Gillam, Elizabeth M. J. [2 ]
机构
[1] AstraZeneca, Drug Metab & Pharmacokinet DMPK, Cardiovasc Renal & Metab CVRM, BioPharmaceut R&D,Res & Early Dev, Gothenburg, Sweden
[2] Univ Queensland, Sch Chem & Mol Biosci, St Lucia, Qld 4072, Australia
[3] AstraZeneca, Discovery Sci, BioPharmaceut R&D, Gothenburg, Sweden
基金
澳大利亚研究理事会;
关键词
SAFETY TESTING MIST; IN-VITRO; OXIDATIVE-METABOLISM; DRUG METABOLITES; DEXTROMETHORPHAN; BIOACTIVATION; EVOLUTION; DISCOVERY; IDENTIFICATION;
D O I
10.1124/dmd.123.001569
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Detailed structural characterization of small molecule metabolites is desirable during all stages of drug development, and often relies on the synthesis of metabolite standards. However, introducing structural changes into already complex, highly functionalized small molecules both regio- and stereo -selectively can be challenging using purely chemical approaches, introducing delays into the drug pipeline. An alternative is to use the cytochrome P450 enzymes (P450s) that produce the metabolites in vivo, taking advantage of the enzyme's inherently chiral active site to achieve regio- and stereoselectivity. Importantly, biotransformations are more sustainable: they proceed under mild conditions and avoid environmentally damaging solvents and transition metal catalysts. Recombinant enzymes avoid the need to use animal liver microsomes. However, native enzymes must be stabilized to work for extended periods or at elevated temperatures, and stabilizing mutations can alter catalytic activity. Here we assessed a set of novel, thermostable P450s in bacterial membranes, a format analogous to liver microsomes, for their ability to metabolize drugs through various pathways and compared them to human liver microsomes. Collectively, the thermostable P450s could replicate the metabolic pathways seen with human liver microsomes, including bioactivation to protein -reactive intermediates. Novel metabolites were found, suggesting the possibility of obtaining metabolites not produced by human or rodent liver microsomes. Importantly, no alteration in assay conditions from standard protocols for microsomal incubations was necessary. Thus, such bacterial membranes represent an analogous metabolite generation system to liver microsomes in terms of metabolites produced and ease of use, but which provides access to more diversity of metabolite structures.
引用
收藏
页码:242 / 251
页数:10
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