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Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11

Cytochrome P450 4A11 (CYP4A11) is a fatty acid hydroxylase enzyme expressed in human liver. It catalyzes not only the hydroxylation of saturated and unsaturated fatty acids, but the conversion of arachidonic acid to 20-hydroxyeicosatetraenoic acid (20-HETE), a regulator of blood pressure. In this st...

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Autores principales: Choi, Seunghye, Han, Songhee, Lee, Hwayoun, Chun, Young-Jin, Kim, Donghak
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Korean Society of Applied Pharmacology 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879922/
https://www.ncbi.nlm.nih.gov/pubmed/24404341
http://dx.doi.org/10.4062/biomolther.2013.086
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author Choi, Seunghye
Han, Songhee
Lee, Hwayoun
Chun, Young-Jin
Kim, Donghak
author_facet Choi, Seunghye
Han, Songhee
Lee, Hwayoun
Chun, Young-Jin
Kim, Donghak
author_sort Choi, Seunghye
collection PubMed
description Cytochrome P450 4A11 (CYP4A11) is a fatty acid hydroxylase enzyme expressed in human liver. It catalyzes not only the hydroxylation of saturated and unsaturated fatty acids, but the conversion of arachidonic acid to 20-hydroxyeicosatetraenoic acid (20-HETE), a regulator of blood pressure. In this study, we performed a directed evolution analysis of CYP4A11 using the luminogenic assay system. A random mutant library of CYP4A11, in which mutations were made throughout the entire coding region, was screened with luciferase activity to detect the demethylation of luciferin-4A (2-[6-methoxyquinolin-2-yl]-4,5-dihydrothiazole-4-carboxylic acid) of CYP4A11 mutants in Escherichia coli. Consecutive rounds of random mutagenesis and screening yielded three improved CYP4A11 mutants, CP2600 (A24T/T263A), CP2601 (T263A), and CP2616 (A24T/T263A/V430E) with ~3-fold increase in whole cells and >10-fold increase in purified proteins on the luminescence assay. However, the steady state kinetic analysis for lauric acid hydroxylation showed the significant reductions in enzymatic activities in all three mutants. A mutant, CP2600, showed a 51% decrease in catalytic efficiency (k(cat)/K(m)) for lauric acid hydroxylation mainly due to an increase in K(m). CP2601 and CP2616 showed much greater reductions (>75%) in the catalytic efficiency due to both a decrease in k(cat) and an increase in K(m). These decreased catalytic activities of CP2601 and CP2616 can be partially attributed to the changes in substrate affinities. These results suggest that the enzymatic activities of CYP4A11 mutants selected from directed evolution using a luminogenic P450 substrate may not demonstrate a direct correlation with the hydroxylation activities of lauric acid.
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spelling pubmed-38799222014-01-08 Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11 Choi, Seunghye Han, Songhee Lee, Hwayoun Chun, Young-Jin Kim, Donghak Biomol Ther (Seoul) Articles Cytochrome P450 4A11 (CYP4A11) is a fatty acid hydroxylase enzyme expressed in human liver. It catalyzes not only the hydroxylation of saturated and unsaturated fatty acids, but the conversion of arachidonic acid to 20-hydroxyeicosatetraenoic acid (20-HETE), a regulator of blood pressure. In this study, we performed a directed evolution analysis of CYP4A11 using the luminogenic assay system. A random mutant library of CYP4A11, in which mutations were made throughout the entire coding region, was screened with luciferase activity to detect the demethylation of luciferin-4A (2-[6-methoxyquinolin-2-yl]-4,5-dihydrothiazole-4-carboxylic acid) of CYP4A11 mutants in Escherichia coli. Consecutive rounds of random mutagenesis and screening yielded three improved CYP4A11 mutants, CP2600 (A24T/T263A), CP2601 (T263A), and CP2616 (A24T/T263A/V430E) with ~3-fold increase in whole cells and >10-fold increase in purified proteins on the luminescence assay. However, the steady state kinetic analysis for lauric acid hydroxylation showed the significant reductions in enzymatic activities in all three mutants. A mutant, CP2600, showed a 51% decrease in catalytic efficiency (k(cat)/K(m)) for lauric acid hydroxylation mainly due to an increase in K(m). CP2601 and CP2616 showed much greater reductions (>75%) in the catalytic efficiency due to both a decrease in k(cat) and an increase in K(m). These decreased catalytic activities of CP2601 and CP2616 can be partially attributed to the changes in substrate affinities. These results suggest that the enzymatic activities of CYP4A11 mutants selected from directed evolution using a luminogenic P450 substrate may not demonstrate a direct correlation with the hydroxylation activities of lauric acid. The Korean Society of Applied Pharmacology 2013-11 /pmc/articles/PMC3879922/ /pubmed/24404341 http://dx.doi.org/10.4062/biomolther.2013.086 Text en Copyright ©2013, The Korean Society of Applied Pharmacology http://creativecommons.org/licenses/by-nc/3.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Articles
Choi, Seunghye
Han, Songhee
Lee, Hwayoun
Chun, Young-Jin
Kim, Donghak
Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title_full Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title_fullStr Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title_full_unstemmed Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title_short Evaluation of Luminescent P450 Analysis for Directed Evolution of Human CYP4A11
title_sort evaluation of luminescent p450 analysis for directed evolution of human cyp4a11
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3879922/
https://www.ncbi.nlm.nih.gov/pubmed/24404341
http://dx.doi.org/10.4062/biomolther.2013.086
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