Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp
The present study describes the 19F nuclear magnetic resonance analysis of the conversion of 3-halocatechols to lactones by purified chlorocatechol 1,2-dioxygenase (ClcA2), chloromuconate cycloisomerase (ClcB2), and chloromuconolactone dehalogenase (ClcF) from Rhodococcus opacus 1cp grown on 2-chlorophenol. The 3-halocatechol substrates were produced from the corresponding 2-halophenols by either phenol hydroxylase from Trichosporon cutaneum or 2-hydroxybiphenyl 3-mono-oxygenase from Pseudomonas azelaica. Several fluoromuconates resulting from intradiol ring cleavage by ClcA2 were identified. ClcB2 converted 2-fluoromuconate to 5-fluoromuconolactone and 2-chloro-4-fluoromuconate to 2-chloro-4-fluoromuconolactone. Especially the cycloisomerization of 2-fluoromuconate is a new observation. ClcF catalyzed the dehalogenation of 5-fluoromuconolactone to cis-dienelactone. The ClcB2 and ClcF-mediated reactions are in line with the recent finding of a second cluster of chlorocatechol catabolic genes in R. opacus 1cp which provides a new route for the microbial dehalogenation of 3-chlorocatechol
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Subjects: | 2-hydroxybiphenyl 3-monooxygenase, alcaligenes-eutrophus jmp-134, chemical-structure, chlorocatechol 1, chloromuconate cycloisomerases, erythropolis 1cp, halogenated aromatic-compounds, modified ortho-pathway, phenol hydroxylase, pseudomonas-azelaica hbp1, |
Online Access: | https://research.wur.nl/en/publications/conversion-of-2-fluoromuconate-to-cis-dienelactone-by-purified-en |
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dig-wur-nl-wurpubs-3263072024-12-04 Solyanikova, I.P. Moisseeva, O.V. Boeren, S. Boersma, M.G. Kolomytseva, M.P. Vervoort, J.J.M. Rietjens, I.M.C.M. Golovleva, L.A. van Berkel, W.J.H. Article/Letter to editor Applied and Environmental Microbiology 69 (2003) 9 ISSN: 0099-2240 Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp 2003 The present study describes the 19F nuclear magnetic resonance analysis of the conversion of 3-halocatechols to lactones by purified chlorocatechol 1,2-dioxygenase (ClcA2), chloromuconate cycloisomerase (ClcB2), and chloromuconolactone dehalogenase (ClcF) from Rhodococcus opacus 1cp grown on 2-chlorophenol. The 3-halocatechol substrates were produced from the corresponding 2-halophenols by either phenol hydroxylase from Trichosporon cutaneum or 2-hydroxybiphenyl 3-mono-oxygenase from Pseudomonas azelaica. Several fluoromuconates resulting from intradiol ring cleavage by ClcA2 were identified. ClcB2 converted 2-fluoromuconate to 5-fluoromuconolactone and 2-chloro-4-fluoromuconate to 2-chloro-4-fluoromuconolactone. Especially the cycloisomerization of 2-fluoromuconate is a new observation. ClcF catalyzed the dehalogenation of 5-fluoromuconolactone to cis-dienelactone. The ClcB2 and ClcF-mediated reactions are in line with the recent finding of a second cluster of chlorocatechol catabolic genes in R. opacus 1cp which provides a new route for the microbial dehalogenation of 3-chlorocatechol en application/pdf https://research.wur.nl/en/publications/conversion-of-2-fluoromuconate-to-cis-dienelactone-by-purified-en 10.1128/AEM.69.9.5636-5642.2003 https://edepot.wur.nl/43969 2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 Wageningen University & Research |
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2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 |
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2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 Solyanikova, I.P. Moisseeva, O.V. Boeren, S. Boersma, M.G. Kolomytseva, M.P. Vervoort, J.J.M. Rietjens, I.M.C.M. Golovleva, L.A. van Berkel, W.J.H. Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
description |
The present study describes the 19F nuclear magnetic resonance analysis of the conversion of 3-halocatechols to lactones by purified chlorocatechol 1,2-dioxygenase (ClcA2), chloromuconate cycloisomerase (ClcB2), and chloromuconolactone dehalogenase (ClcF) from Rhodococcus opacus 1cp grown on 2-chlorophenol. The 3-halocatechol substrates were produced from the corresponding 2-halophenols by either phenol hydroxylase from Trichosporon cutaneum or 2-hydroxybiphenyl 3-mono-oxygenase from Pseudomonas azelaica. Several fluoromuconates resulting from intradiol ring cleavage by ClcA2 were identified. ClcB2 converted 2-fluoromuconate to 5-fluoromuconolactone and 2-chloro-4-fluoromuconate to 2-chloro-4-fluoromuconolactone. Especially the cycloisomerization of 2-fluoromuconate is a new observation. ClcF catalyzed the dehalogenation of 5-fluoromuconolactone to cis-dienelactone. The ClcB2 and ClcF-mediated reactions are in line with the recent finding of a second cluster of chlorocatechol catabolic genes in R. opacus 1cp which provides a new route for the microbial dehalogenation of 3-chlorocatechol |
format |
Article/Letter to editor |
topic_facet |
2-hydroxybiphenyl 3-monooxygenase alcaligenes-eutrophus jmp-134 chemical-structure chlorocatechol 1 chloromuconate cycloisomerases erythropolis 1cp halogenated aromatic-compounds modified ortho-pathway phenol hydroxylase pseudomonas-azelaica hbp1 |
author |
Solyanikova, I.P. Moisseeva, O.V. Boeren, S. Boersma, M.G. Kolomytseva, M.P. Vervoort, J.J.M. Rietjens, I.M.C.M. Golovleva, L.A. van Berkel, W.J.H. |
author_facet |
Solyanikova, I.P. Moisseeva, O.V. Boeren, S. Boersma, M.G. Kolomytseva, M.P. Vervoort, J.J.M. Rietjens, I.M.C.M. Golovleva, L.A. van Berkel, W.J.H. |
author_sort |
Solyanikova, I.P. |
title |
Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
title_short |
Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
title_full |
Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
title_fullStr |
Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
title_full_unstemmed |
Conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from Rhodococcus opacus 1cp |
title_sort |
conversion of 2-fluoromuconate to cis-dienelactone by purified enzymes from rhodococcus opacus 1cp |
url |
https://research.wur.nl/en/publications/conversion-of-2-fluoromuconate-to-cis-dienelactone-by-purified-en |
work_keys_str_mv |
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1819151359342018560 |