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Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi

Na(+)-translocating NADH:quinone oxidoreductase (NQR) is a redox-driven sodium pump operating in the respiratory chain of various bacteria, including pathogenic species. The enzyme has a unique set of redox active prosthetic groups, which includes two covalently bound flavin mononucleotide (FMN) res...

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Autores principales: Borshchevskiy, Valentin, Round, Ekaterina, Bertsova, Yulia, Polovinkin, Vitaly, Gushchin, Ivan, Ishchenko, Andrii, Kovalev, Kirill, Mishin, Alexey, Kachalova, Galina, Popov, Alexander, Bogachev, Alexander, Gordeliy, Valentin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348036/
https://www.ncbi.nlm.nih.gov/pubmed/25734798
http://dx.doi.org/10.1371/journal.pone.0118548
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author Borshchevskiy, Valentin
Round, Ekaterina
Bertsova, Yulia
Polovinkin, Vitaly
Gushchin, Ivan
Ishchenko, Andrii
Kovalev, Kirill
Mishin, Alexey
Kachalova, Galina
Popov, Alexander
Bogachev, Alexander
Gordeliy, Valentin
author_facet Borshchevskiy, Valentin
Round, Ekaterina
Bertsova, Yulia
Polovinkin, Vitaly
Gushchin, Ivan
Ishchenko, Andrii
Kovalev, Kirill
Mishin, Alexey
Kachalova, Galina
Popov, Alexander
Bogachev, Alexander
Gordeliy, Valentin
author_sort Borshchevskiy, Valentin
collection PubMed
description Na(+)-translocating NADH:quinone oxidoreductase (NQR) is a redox-driven sodium pump operating in the respiratory chain of various bacteria, including pathogenic species. The enzyme has a unique set of redox active prosthetic groups, which includes two covalently bound flavin mononucleotide (FMN) residues attached to threonine residues in subunits NqrB and NqrC. The reason of FMN covalent bonding in the subunits has not been established yet. In the current work, binding of free FMN to the apo-form of NqrC from Vibrio harveyi was studied showing very low affinity of NqrC to FMN in the absence of its covalent bonding. To study structural aspects of flavin binding in NqrC, its holo-form was crystallized and its 3D structure was solved at 1.56 Å resolution. It was found that the isoalloxazine moiety of the FMN residue is buried in a hydrophobic cavity and that its pyrimidine ring is squeezed between hydrophobic amino acid residues while its benzene ring is extended from the protein surroundings. This structure of the flavin-binding pocket appears to provide flexibility of the benzene ring, which can help the FMN residue to take the bended conformation and thus to stabilize the one-electron reduced form of the prosthetic group. These properties may also lead to relatively weak noncovalent binding of the flavin. This fact along with periplasmic location of the FMN-binding domains in the vast majority of NqrC-like proteins may explain the necessity of the covalent bonding of this prosthetic group to prevent its loss to the external medium.
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spelling pubmed-43480362015-03-06 Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi Borshchevskiy, Valentin Round, Ekaterina Bertsova, Yulia Polovinkin, Vitaly Gushchin, Ivan Ishchenko, Andrii Kovalev, Kirill Mishin, Alexey Kachalova, Galina Popov, Alexander Bogachev, Alexander Gordeliy, Valentin PLoS One Research Article Na(+)-translocating NADH:quinone oxidoreductase (NQR) is a redox-driven sodium pump operating in the respiratory chain of various bacteria, including pathogenic species. The enzyme has a unique set of redox active prosthetic groups, which includes two covalently bound flavin mononucleotide (FMN) residues attached to threonine residues in subunits NqrB and NqrC. The reason of FMN covalent bonding in the subunits has not been established yet. In the current work, binding of free FMN to the apo-form of NqrC from Vibrio harveyi was studied showing very low affinity of NqrC to FMN in the absence of its covalent bonding. To study structural aspects of flavin binding in NqrC, its holo-form was crystallized and its 3D structure was solved at 1.56 Å resolution. It was found that the isoalloxazine moiety of the FMN residue is buried in a hydrophobic cavity and that its pyrimidine ring is squeezed between hydrophobic amino acid residues while its benzene ring is extended from the protein surroundings. This structure of the flavin-binding pocket appears to provide flexibility of the benzene ring, which can help the FMN residue to take the bended conformation and thus to stabilize the one-electron reduced form of the prosthetic group. These properties may also lead to relatively weak noncovalent binding of the flavin. This fact along with periplasmic location of the FMN-binding domains in the vast majority of NqrC-like proteins may explain the necessity of the covalent bonding of this prosthetic group to prevent its loss to the external medium. Public Library of Science 2015-03-03 /pmc/articles/PMC4348036/ /pubmed/25734798 http://dx.doi.org/10.1371/journal.pone.0118548 Text en © 2015 Borshchevskiy et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Borshchevskiy, Valentin
Round, Ekaterina
Bertsova, Yulia
Polovinkin, Vitaly
Gushchin, Ivan
Ishchenko, Andrii
Kovalev, Kirill
Mishin, Alexey
Kachalova, Galina
Popov, Alexander
Bogachev, Alexander
Gordeliy, Valentin
Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title_full Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title_fullStr Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title_full_unstemmed Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title_short Structural and Functional Investigation of Flavin Binding Center of the NqrC Subunit of Sodium-Translocating NADH:Quinone Oxidoreductase from Vibrio harveyi
title_sort structural and functional investigation of flavin binding center of the nqrc subunit of sodium-translocating nadh:quinone oxidoreductase from vibrio harveyi
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4348036/
https://www.ncbi.nlm.nih.gov/pubmed/25734798
http://dx.doi.org/10.1371/journal.pone.0118548
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