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Dissecting the low catalytic capability of flavin-dependent halogenases

Although flavin-dependent halogenases (FDHs) are attractive biocatalysts, their practical applications are limited because of their low catalytic efficiency. Here, we investigated the reaction mechanisms and structures of tryptophan 6-halogenase (Thal) from Streptomyces albogriseolus using stopped-f...

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Autores principales: Phintha, Aisaraphon, Prakinee, Kridsadakorn, Jaruwat, Aritsara, Lawan, Narin, Visitsatthawong, Surawit, Kantiwiriyawanitch, Chadaporn, Songsungthong, Warangkhana, Trisrivirat, Duangthip, Chenprakhon, Pirom, Mulholland, Adrian, van Pée, Karl-Heinz, Chitnumsub, Penchit, Chaiyen, Pimchai
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948982/
https://www.ncbi.nlm.nih.gov/pubmed/33465708
http://dx.doi.org/10.1074/jbc.RA120.016004
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author Phintha, Aisaraphon
Prakinee, Kridsadakorn
Jaruwat, Aritsara
Lawan, Narin
Visitsatthawong, Surawit
Kantiwiriyawanitch, Chadaporn
Songsungthong, Warangkhana
Trisrivirat, Duangthip
Chenprakhon, Pirom
Mulholland, Adrian
van Pée, Karl-Heinz
Chitnumsub, Penchit
Chaiyen, Pimchai
author_facet Phintha, Aisaraphon
Prakinee, Kridsadakorn
Jaruwat, Aritsara
Lawan, Narin
Visitsatthawong, Surawit
Kantiwiriyawanitch, Chadaporn
Songsungthong, Warangkhana
Trisrivirat, Duangthip
Chenprakhon, Pirom
Mulholland, Adrian
van Pée, Karl-Heinz
Chitnumsub, Penchit
Chaiyen, Pimchai
author_sort Phintha, Aisaraphon
collection PubMed
description Although flavin-dependent halogenases (FDHs) are attractive biocatalysts, their practical applications are limited because of their low catalytic efficiency. Here, we investigated the reaction mechanisms and structures of tryptophan 6-halogenase (Thal) from Streptomyces albogriseolus using stopped-flow, rapid-quench flow, quantum/mechanics molecular mechanics calculations, crystallography, and detection of intermediate (hypohalous acid [HOX]) liberation. We found that the key flavin intermediate, C4a-hydroperoxyflavin (C4aOOH-FAD), formed by Thal and other FDHs (tryptophan 7-halogenase [PrnA] and tryptophan 5-halogenase [PyrH]), can react with I(−), Br(−), and Cl(−) but not F(−) to form C4a-hydroxyflavin and HOX. Our experiments revealed that I(−) reacts with C4aOOH-FAD the fastest with the lowest energy barrier and have shown for the first time that a significant amount of the HOX formed leaks out as free HOX. This leakage is probably a major cause of low product coupling ratios in all FDHs. Site-saturation mutagenesis of Lys79 showed that changing Lys79 to any other amino acid resulted in an inactive enzyme. However, the levels of liberated HOX of these variants are all similar, implying that Lys79 probably does not form a chloramine or bromamine intermediate as previously proposed. Computational calculations revealed that Lys79 has an abnormally lower pKa compared with other Lys residues, implying that the catalytic Lys may act as a proton donor in catalysis. Analysis of new X-ray structures of Thal also explains why premixing of FDHs with reduced flavin adenine dinucleotide generally results in abolishment of C4aOOH-FAD formation. These findings reveal the hidden factors restricting FDHs capability which should be useful for future development of FDHs applications.
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spelling pubmed-79489822021-03-19 Dissecting the low catalytic capability of flavin-dependent halogenases Phintha, Aisaraphon Prakinee, Kridsadakorn Jaruwat, Aritsara Lawan, Narin Visitsatthawong, Surawit Kantiwiriyawanitch, Chadaporn Songsungthong, Warangkhana Trisrivirat, Duangthip Chenprakhon, Pirom Mulholland, Adrian van Pée, Karl-Heinz Chitnumsub, Penchit Chaiyen, Pimchai J Biol Chem Research Article Although flavin-dependent halogenases (FDHs) are attractive biocatalysts, their practical applications are limited because of their low catalytic efficiency. Here, we investigated the reaction mechanisms and structures of tryptophan 6-halogenase (Thal) from Streptomyces albogriseolus using stopped-flow, rapid-quench flow, quantum/mechanics molecular mechanics calculations, crystallography, and detection of intermediate (hypohalous acid [HOX]) liberation. We found that the key flavin intermediate, C4a-hydroperoxyflavin (C4aOOH-FAD), formed by Thal and other FDHs (tryptophan 7-halogenase [PrnA] and tryptophan 5-halogenase [PyrH]), can react with I(−), Br(−), and Cl(−) but not F(−) to form C4a-hydroxyflavin and HOX. Our experiments revealed that I(−) reacts with C4aOOH-FAD the fastest with the lowest energy barrier and have shown for the first time that a significant amount of the HOX formed leaks out as free HOX. This leakage is probably a major cause of low product coupling ratios in all FDHs. Site-saturation mutagenesis of Lys79 showed that changing Lys79 to any other amino acid resulted in an inactive enzyme. However, the levels of liberated HOX of these variants are all similar, implying that Lys79 probably does not form a chloramine or bromamine intermediate as previously proposed. Computational calculations revealed that Lys79 has an abnormally lower pKa compared with other Lys residues, implying that the catalytic Lys may act as a proton donor in catalysis. Analysis of new X-ray structures of Thal also explains why premixing of FDHs with reduced flavin adenine dinucleotide generally results in abolishment of C4aOOH-FAD formation. These findings reveal the hidden factors restricting FDHs capability which should be useful for future development of FDHs applications. American Society for Biochemistry and Molecular Biology 2020-11-23 /pmc/articles/PMC7948982/ /pubmed/33465708 http://dx.doi.org/10.1074/jbc.RA120.016004 Text en © 2020 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Phintha, Aisaraphon
Prakinee, Kridsadakorn
Jaruwat, Aritsara
Lawan, Narin
Visitsatthawong, Surawit
Kantiwiriyawanitch, Chadaporn
Songsungthong, Warangkhana
Trisrivirat, Duangthip
Chenprakhon, Pirom
Mulholland, Adrian
van Pée, Karl-Heinz
Chitnumsub, Penchit
Chaiyen, Pimchai
Dissecting the low catalytic capability of flavin-dependent halogenases
title Dissecting the low catalytic capability of flavin-dependent halogenases
title_full Dissecting the low catalytic capability of flavin-dependent halogenases
title_fullStr Dissecting the low catalytic capability of flavin-dependent halogenases
title_full_unstemmed Dissecting the low catalytic capability of flavin-dependent halogenases
title_short Dissecting the low catalytic capability of flavin-dependent halogenases
title_sort dissecting the low catalytic capability of flavin-dependent halogenases
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7948982/
https://www.ncbi.nlm.nih.gov/pubmed/33465708
http://dx.doi.org/10.1074/jbc.RA120.016004
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