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A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster

Reduction of dinitrogen by molybdenum nitrogenase relies on complex metalloclusters: the [8Fe:7S] P-cluster and the [7Fe:9S:Mo:C:homocitrate] FeMo-cofactor. Although both clusters bear topological similarities and require the reductive fusion of [4Fe:4S] sub-clusters to achieve their respective asse...

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Autores principales: Van Stappen, Casey, Jiménez-Vicente, Emilio, Pérez-González, Ana, Yang, Zhi-Yong, Seefeldt, Lance C., DeBeer, Serena, Dean, Dennis R., Decamps, Laure
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8943848/
https://www.ncbi.nlm.nih.gov/pubmed/35432878
http://dx.doi.org/10.1039/d1sc06418e
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author Van Stappen, Casey
Jiménez-Vicente, Emilio
Pérez-González, Ana
Yang, Zhi-Yong
Seefeldt, Lance C.
DeBeer, Serena
Dean, Dennis R.
Decamps, Laure
author_facet Van Stappen, Casey
Jiménez-Vicente, Emilio
Pérez-González, Ana
Yang, Zhi-Yong
Seefeldt, Lance C.
DeBeer, Serena
Dean, Dennis R.
Decamps, Laure
author_sort Van Stappen, Casey
collection PubMed
description Reduction of dinitrogen by molybdenum nitrogenase relies on complex metalloclusters: the [8Fe:7S] P-cluster and the [7Fe:9S:Mo:C:homocitrate] FeMo-cofactor. Although both clusters bear topological similarities and require the reductive fusion of [4Fe:4S] sub-clusters to achieve their respective assemblies, P-clusters are assembled directly on the NifD(2)K(2) polypeptide prior to the insertion of FeMo-co, which is fully assembled separately from NifD(2)K(2). P-cluster maturation involves the iron protein NifH(2) as well as several accessory proteins, whose role has not been elucidated. In the present work, two NifD(2)K(2) species bearing immature P-clusters were isolated from an Azotobacter vinelandii strain in which the genes encoding NifH and the accessory protein NifZ were deleted, and characterized by X-ray absorption spectroscopy and EPR. These analyses showed that both NifD(2)K(2) complexes harbor clusters that are electronically and structurally similar, with each NifDK unit containing two [4Fe:4S](2+/+) clusters. Binding of the accessory protein NifW parallels a decrease in the distance between these clusters, as well as a subtle change in their coordination. These results support a conformational role for NifW in P-cluster biosynthesis, bringing the two [4Fe:4S] precursors closer prior to their fusion, which may be crucial in challenging cellular contexts.
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spelling pubmed-89438482022-04-14 A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster Van Stappen, Casey Jiménez-Vicente, Emilio Pérez-González, Ana Yang, Zhi-Yong Seefeldt, Lance C. DeBeer, Serena Dean, Dennis R. Decamps, Laure Chem Sci Chemistry Reduction of dinitrogen by molybdenum nitrogenase relies on complex metalloclusters: the [8Fe:7S] P-cluster and the [7Fe:9S:Mo:C:homocitrate] FeMo-cofactor. Although both clusters bear topological similarities and require the reductive fusion of [4Fe:4S] sub-clusters to achieve their respective assemblies, P-clusters are assembled directly on the NifD(2)K(2) polypeptide prior to the insertion of FeMo-co, which is fully assembled separately from NifD(2)K(2). P-cluster maturation involves the iron protein NifH(2) as well as several accessory proteins, whose role has not been elucidated. In the present work, two NifD(2)K(2) species bearing immature P-clusters were isolated from an Azotobacter vinelandii strain in which the genes encoding NifH and the accessory protein NifZ were deleted, and characterized by X-ray absorption spectroscopy and EPR. These analyses showed that both NifD(2)K(2) complexes harbor clusters that are electronically and structurally similar, with each NifDK unit containing two [4Fe:4S](2+/+) clusters. Binding of the accessory protein NifW parallels a decrease in the distance between these clusters, as well as a subtle change in their coordination. These results support a conformational role for NifW in P-cluster biosynthesis, bringing the two [4Fe:4S] precursors closer prior to their fusion, which may be crucial in challenging cellular contexts. The Royal Society of Chemistry 2022-02-28 /pmc/articles/PMC8943848/ /pubmed/35432878 http://dx.doi.org/10.1039/d1sc06418e Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Van Stappen, Casey
Jiménez-Vicente, Emilio
Pérez-González, Ana
Yang, Zhi-Yong
Seefeldt, Lance C.
DeBeer, Serena
Dean, Dennis R.
Decamps, Laure
A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title_full A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title_fullStr A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title_full_unstemmed A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title_short A conformational role for NifW in the maturation of molybdenum nitrogenase P-cluster
title_sort conformational role for nifw in the maturation of molybdenum nitrogenase p-cluster
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8943848/
https://www.ncbi.nlm.nih.gov/pubmed/35432878
http://dx.doi.org/10.1039/d1sc06418e
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