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Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii

The nitrogen-fixing microbe Azotobacter vinelandii has the ability to produce three genetically distinct, but mechanistically similar, components that catalyze nitrogen fixation. For two of these components, the Mo-dependent and V-dependent components, their corresponding metal-containing active sit...

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Autores principales: Pérez-González, Ana, Jimenez-Vicente, Emilio, Gies-Elterlein, Jakob, Salinero-Lanzarote, Alvaro, Yang, Zhi-Yong, Einsle, Oliver, Seefeldt, Lance C., Dean, Dennis R.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8406325/
https://www.ncbi.nlm.nih.gov/pubmed/34281397
http://dx.doi.org/10.1128/mBio.01568-21
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author Pérez-González, Ana
Jimenez-Vicente, Emilio
Gies-Elterlein, Jakob
Salinero-Lanzarote, Alvaro
Yang, Zhi-Yong
Einsle, Oliver
Seefeldt, Lance C.
Dean, Dennis R.
author_facet Pérez-González, Ana
Jimenez-Vicente, Emilio
Gies-Elterlein, Jakob
Salinero-Lanzarote, Alvaro
Yang, Zhi-Yong
Einsle, Oliver
Seefeldt, Lance C.
Dean, Dennis R.
author_sort Pérez-González, Ana
collection PubMed
description The nitrogen-fixing microbe Azotobacter vinelandii has the ability to produce three genetically distinct, but mechanistically similar, components that catalyze nitrogen fixation. For two of these components, the Mo-dependent and V-dependent components, their corresponding metal-containing active site cofactors, designated FeMo-cofactor and FeV-cofactor, respectively, are preformed on separate molecular scaffolds designated NifEN and VnfEN, respectively. From prior studies, and the present work, it is now established that neither of these scaffolds can replace the other with respect to their in vivo cofactor assembly functions. Namely, a strain inactivated for NifEN cannot produce active Mo-dependent nitrogenase nor can a strain inactivated for VnfEN produce an active V-dependent nitrogenase. It is therefore proposed that metal specificities for FeMo-cofactor and FeV-cofactor formation are supplied by their respective assembly scaffolds. In the case of the third, Fe-only component, its associated active site cofactor, designated FeFe-cofactor, requires neither the NifEN nor VnfEN assembly scaffold for its formation. Furthermore, there are no other genes present in A. vinelandii that encode proteins having primary structure similarity to either NifEN or VnfEN. It is therefore concluded that FeFe-cofactor assembly is completed within its cognate catalytic protein partner without the aid of an intermediate assembly site.
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spelling pubmed-84063252021-09-09 Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii Pérez-González, Ana Jimenez-Vicente, Emilio Gies-Elterlein, Jakob Salinero-Lanzarote, Alvaro Yang, Zhi-Yong Einsle, Oliver Seefeldt, Lance C. Dean, Dennis R. mBio Research Article The nitrogen-fixing microbe Azotobacter vinelandii has the ability to produce three genetically distinct, but mechanistically similar, components that catalyze nitrogen fixation. For two of these components, the Mo-dependent and V-dependent components, their corresponding metal-containing active site cofactors, designated FeMo-cofactor and FeV-cofactor, respectively, are preformed on separate molecular scaffolds designated NifEN and VnfEN, respectively. From prior studies, and the present work, it is now established that neither of these scaffolds can replace the other with respect to their in vivo cofactor assembly functions. Namely, a strain inactivated for NifEN cannot produce active Mo-dependent nitrogenase nor can a strain inactivated for VnfEN produce an active V-dependent nitrogenase. It is therefore proposed that metal specificities for FeMo-cofactor and FeV-cofactor formation are supplied by their respective assembly scaffolds. In the case of the third, Fe-only component, its associated active site cofactor, designated FeFe-cofactor, requires neither the NifEN nor VnfEN assembly scaffold for its formation. Furthermore, there are no other genes present in A. vinelandii that encode proteins having primary structure similarity to either NifEN or VnfEN. It is therefore concluded that FeFe-cofactor assembly is completed within its cognate catalytic protein partner without the aid of an intermediate assembly site. American Society for Microbiology 2021-07-20 /pmc/articles/PMC8406325/ /pubmed/34281397 http://dx.doi.org/10.1128/mBio.01568-21 Text en Copyright © 2021 Pérez-González et al. https://creativecommons.org/licenses/by/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Pérez-González, Ana
Jimenez-Vicente, Emilio
Gies-Elterlein, Jakob
Salinero-Lanzarote, Alvaro
Yang, Zhi-Yong
Einsle, Oliver
Seefeldt, Lance C.
Dean, Dennis R.
Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title_full Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title_fullStr Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title_full_unstemmed Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title_short Specificity of NifEN and VnfEN for the Assembly of Nitrogenase Active Site Cofactors in Azotobacter vinelandii
title_sort specificity of nifen and vnfen for the assembly of nitrogenase active site cofactors in azotobacter vinelandii
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8406325/
https://www.ncbi.nlm.nih.gov/pubmed/34281397
http://dx.doi.org/10.1128/mBio.01568-21
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