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Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus

NADH-dependent persulfide reductase (Npsr) has been proposed to facilitate dissimilatory sulfur respiration by reducing persulfide or sulfane sulfur-containing substrates to H(2)S. The presence of this gene in the sulfate and thiosulfate-reducing Archaeoglobus fulgidus DSM 4304 and other hyperthermo...

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Autores principales: Shabdar, Sherwin, Anaclet, Bukuru, Castineiras, Ana Garcia, Desir, Neyissa, Choe, Nicholas, Crane, Edward J., Sazinsky, Matthew H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7969121/
https://www.ncbi.nlm.nih.gov/pubmed/33776585
http://dx.doi.org/10.1155/2021/8817136
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author Shabdar, Sherwin
Anaclet, Bukuru
Castineiras, Ana Garcia
Desir, Neyissa
Choe, Nicholas
Crane, Edward J.
Sazinsky, Matthew H.
author_facet Shabdar, Sherwin
Anaclet, Bukuru
Castineiras, Ana Garcia
Desir, Neyissa
Choe, Nicholas
Crane, Edward J.
Sazinsky, Matthew H.
author_sort Shabdar, Sherwin
collection PubMed
description NADH-dependent persulfide reductase (Npsr) has been proposed to facilitate dissimilatory sulfur respiration by reducing persulfide or sulfane sulfur-containing substrates to H(2)S. The presence of this gene in the sulfate and thiosulfate-reducing Archaeoglobus fulgidus DSM 4304 and other hyperthermophilic Archaeoglobales appears anomalous, as A. fulgidus is unable to respire S(0) and grow in the presence of elemental sulfur. To assess the role of Npsr in the sulfur metabolism of A. fulgidus DSM 4304, the Npsr from A. fulgidus was characterized. AfNpsr is specific for persulfide and polysulfide as substrates in the oxidative half-reaction, exhibiting k(cat)/K(m) on the order of 10(4) M(−1) s(−1), which is similar to the kinetic parameters observed for hyperthermophilic CoA persulfide reductases. In contrast to the bacterial Npsr, AfNpsr exhibits low disulfide reductase activity with DTNB; however, similar to the bacterial enzymes, it does not show detectable activity with CoA-disulfide, oxidized glutathione, or cystine. The 3.1 Å X-ray structure of AfNpsr reveals access to the tightly bound catalytic CoA, and the active site Cys 42 is restricted by a flexible loop (residues 60-66) that is not seen in the bacterial homologs from Shewanella loihica PV-4 and Bacillus anthracis. Unlike the bacterial enzymes, AfNpsr exhibits NADH oxidase activity and also shows no detectable activity with NADPH. Models suggest steric and electrostatic repulsions of the NADPH 2′-phosphate account for the strong preference for NADH. The presence of Npsr in the nonsulfur-reducing A. fulgidus suggests that the enzyme may offer some protection against S(0) or serve in another metabolic role that has yet to be identified.
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spelling pubmed-79691212021-03-26 Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus Shabdar, Sherwin Anaclet, Bukuru Castineiras, Ana Garcia Desir, Neyissa Choe, Nicholas Crane, Edward J. Sazinsky, Matthew H. Archaea Research Article NADH-dependent persulfide reductase (Npsr) has been proposed to facilitate dissimilatory sulfur respiration by reducing persulfide or sulfane sulfur-containing substrates to H(2)S. The presence of this gene in the sulfate and thiosulfate-reducing Archaeoglobus fulgidus DSM 4304 and other hyperthermophilic Archaeoglobales appears anomalous, as A. fulgidus is unable to respire S(0) and grow in the presence of elemental sulfur. To assess the role of Npsr in the sulfur metabolism of A. fulgidus DSM 4304, the Npsr from A. fulgidus was characterized. AfNpsr is specific for persulfide and polysulfide as substrates in the oxidative half-reaction, exhibiting k(cat)/K(m) on the order of 10(4) M(−1) s(−1), which is similar to the kinetic parameters observed for hyperthermophilic CoA persulfide reductases. In contrast to the bacterial Npsr, AfNpsr exhibits low disulfide reductase activity with DTNB; however, similar to the bacterial enzymes, it does not show detectable activity with CoA-disulfide, oxidized glutathione, or cystine. The 3.1 Å X-ray structure of AfNpsr reveals access to the tightly bound catalytic CoA, and the active site Cys 42 is restricted by a flexible loop (residues 60-66) that is not seen in the bacterial homologs from Shewanella loihica PV-4 and Bacillus anthracis. Unlike the bacterial enzymes, AfNpsr exhibits NADH oxidase activity and also shows no detectable activity with NADPH. Models suggest steric and electrostatic repulsions of the NADPH 2′-phosphate account for the strong preference for NADH. The presence of Npsr in the nonsulfur-reducing A. fulgidus suggests that the enzyme may offer some protection against S(0) or serve in another metabolic role that has yet to be identified. Hindawi 2021-03-09 /pmc/articles/PMC7969121/ /pubmed/33776585 http://dx.doi.org/10.1155/2021/8817136 Text en Copyright © 2021 Sherwin Shabdar et al. https://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Shabdar, Sherwin
Anaclet, Bukuru
Castineiras, Ana Garcia
Desir, Neyissa
Choe, Nicholas
Crane, Edward J.
Sazinsky, Matthew H.
Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title_full Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title_fullStr Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title_full_unstemmed Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title_short Structural and Kinetic Characterization of Hyperthermophilic NADH-Dependent Persulfide Reductase from Archaeoglobus fulgidus
title_sort structural and kinetic characterization of hyperthermophilic nadh-dependent persulfide reductase from archaeoglobus fulgidus
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7969121/
https://www.ncbi.nlm.nih.gov/pubmed/33776585
http://dx.doi.org/10.1155/2021/8817136
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