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Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2

Methanobactins (MBs) are ribosomally produced and post-translationally modified peptides (RiPPs) that are used by methanotrophs for copper acquisition. The signature post-translational modification of MBs is the formation of two heterocyclic groups, either an oxazolone, pyrazinedione or imidazolone...

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Autores principales: Stewart, Andrew, Dershwitz, Philip, Stewart, Charles, Sawaya, Michael R., Yeates, Todd O., Semrau, Jeremy D., Zischka, Hans, DiSpirito, Alan A., Bobik, Thomas A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: International Union of Crystallography 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10167746/
https://www.ncbi.nlm.nih.gov/pubmed/37158309
http://dx.doi.org/10.1107/S2053230X23003035
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author Stewart, Andrew
Dershwitz, Philip
Stewart, Charles
Sawaya, Michael R.
Yeates, Todd O.
Semrau, Jeremy D.
Zischka, Hans
DiSpirito, Alan A.
Bobik, Thomas A.
author_facet Stewart, Andrew
Dershwitz, Philip
Stewart, Charles
Sawaya, Michael R.
Yeates, Todd O.
Semrau, Jeremy D.
Zischka, Hans
DiSpirito, Alan A.
Bobik, Thomas A.
author_sort Stewart, Andrew
collection PubMed
description Methanobactins (MBs) are ribosomally produced and post-translationally modified peptides (RiPPs) that are used by methanotrophs for copper acquisition. The signature post-translational modification of MBs is the formation of two heterocyclic groups, either an oxazolone, pyrazinedione or imidazolone group, with an associated thioamide from an X-Cys dipeptide. The precursor peptide (MbnA) for MB formation is found in a gene cluster of MB-associated genes. The exact biosynthetic pathway of MB formation is not yet fully understood, and there are still uncharacterized proteins in some MB gene clusters, particularly those that produce pyrazinedione or imidazolone rings. One such protein is MbnF, which is proposed to be a flavin monooxygenase (FMO) based on homology. To help to elucidate its possible function, MbnF from Methylocystis sp. strain SB2 was recombinantly produced in Escherichia coli and its X-ray crystal structure was resolved to 2.6 Å resolution. Based on its structural features, MbnF appears to be a type A FMO, most of which catalyze hydroxylation reactions. Preliminary functional characterization shows that MbnF preferentially oxidizes NADPH over NADH, supporting NAD(P)H-mediated flavin reduction, which is the initial step in the reaction cycle of several type A FMO enzymes. It is also shown that MbnF binds the precursor peptide for MB, with subsequent loss of the leader peptide sequence as well as the last three C-terminal amino acids, suggesting that MbnF might be needed for this process to occur. Finally, molecular-dynamics simulations revealed a channel in MbnF that is capable of accommodating the core MbnA fragment minus the three C-terminal amino acids.
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spelling pubmed-101677462023-05-10 Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2 Stewart, Andrew Dershwitz, Philip Stewart, Charles Sawaya, Michael R. Yeates, Todd O. Semrau, Jeremy D. Zischka, Hans DiSpirito, Alan A. Bobik, Thomas A. Acta Crystallogr F Struct Biol Commun Research Communications Methanobactins (MBs) are ribosomally produced and post-translationally modified peptides (RiPPs) that are used by methanotrophs for copper acquisition. The signature post-translational modification of MBs is the formation of two heterocyclic groups, either an oxazolone, pyrazinedione or imidazolone group, with an associated thioamide from an X-Cys dipeptide. The precursor peptide (MbnA) for MB formation is found in a gene cluster of MB-associated genes. The exact biosynthetic pathway of MB formation is not yet fully understood, and there are still uncharacterized proteins in some MB gene clusters, particularly those that produce pyrazinedione or imidazolone rings. One such protein is MbnF, which is proposed to be a flavin monooxygenase (FMO) based on homology. To help to elucidate its possible function, MbnF from Methylocystis sp. strain SB2 was recombinantly produced in Escherichia coli and its X-ray crystal structure was resolved to 2.6 Å resolution. Based on its structural features, MbnF appears to be a type A FMO, most of which catalyze hydroxylation reactions. Preliminary functional characterization shows that MbnF preferentially oxidizes NADPH over NADH, supporting NAD(P)H-mediated flavin reduction, which is the initial step in the reaction cycle of several type A FMO enzymes. It is also shown that MbnF binds the precursor peptide for MB, with subsequent loss of the leader peptide sequence as well as the last three C-terminal amino acids, suggesting that MbnF might be needed for this process to occur. Finally, molecular-dynamics simulations revealed a channel in MbnF that is capable of accommodating the core MbnA fragment minus the three C-terminal amino acids. International Union of Crystallography 2023-05-05 /pmc/articles/PMC10167746/ /pubmed/37158309 http://dx.doi.org/10.1107/S2053230X23003035 Text en © Andrew Stewart et al. 2023 https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution (CC-BY) Licence, which permits unrestricted use, distribution, and reproduction in any medium, provided the original authors and source are cited.
spellingShingle Research Communications
Stewart, Andrew
Dershwitz, Philip
Stewart, Charles
Sawaya, Michael R.
Yeates, Todd O.
Semrau, Jeremy D.
Zischka, Hans
DiSpirito, Alan A.
Bobik, Thomas A.
Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title_full Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title_fullStr Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title_full_unstemmed Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title_short Crystal structure of MbnF: an NADPH-dependent flavin monooxygenase from Methylocystis strain SB2
title_sort crystal structure of mbnf: an nadph-dependent flavin monooxygenase from methylocystis strain sb2
topic Research Communications
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10167746/
https://www.ncbi.nlm.nih.gov/pubmed/37158309
http://dx.doi.org/10.1107/S2053230X23003035
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