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Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”

NifEN plays a key role in the biosynthesis of the iron–molybdenum cofactor (FeMoco) of nitrogenase. A scaffold protein that hosts the conversion of a FeMoco precursor to a mature cofactor, NifEN can assume three conformations during the process of FeMoco maturation. One, designated ΔnifB NifEN, cont...

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Autores principales: Rupnik, Kresimir, Hu, Yilin, Fay, Aaron W., Ribbe, Markus W., Hales, Brian J.
Formato: Texto
Lenguaje:English
Publicado: Springer-Verlag 2010
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3032186/
https://www.ncbi.nlm.nih.gov/pubmed/21038112
http://dx.doi.org/10.1007/s00775-010-0728-9
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author Rupnik, Kresimir
Hu, Yilin
Fay, Aaron W.
Ribbe, Markus W.
Hales, Brian J.
author_facet Rupnik, Kresimir
Hu, Yilin
Fay, Aaron W.
Ribbe, Markus W.
Hales, Brian J.
author_sort Rupnik, Kresimir
collection PubMed
description NifEN plays a key role in the biosynthesis of the iron–molybdenum cofactor (FeMoco) of nitrogenase. A scaffold protein that hosts the conversion of a FeMoco precursor to a mature cofactor, NifEN can assume three conformations during the process of FeMoco maturation. One, designated ΔnifB NifEN, contains only two permanent [Fe(4)S(4)]-like clusters. The second, designated NifEN(Precursor), contains the permanent clusters and a precursor form of FeMoco. The third, designated NifEN(“FeMoco”), contains the permanent [Fe(4)S(4)]-like clusters and a fully complemented, “FeMoco”-like structure. Here, we report a variable-temperature, variable-field magnetic circular dichroism spectroscopic investigation of the electronic structure of the metal clusters in the three forms of dithionite-reduced NifEN. Our data indicate that the permanent [Fe(4)S(4)]-like clusters are structurally and electronically conserved in all three NifEN species and exhibit spectral features of classic [Fe(4)S(4)](+) clusters; however, they are present in a mixed spin state with a small contribution from the S > ½ spin state. Our results also suggest that both the precursor and “FeMoco” have a conserved Fe/S electronic structure that is similar to the electronic structure of FeMoco in the MoFe protein, and that the “FeMoco” in NifEN(“FeMoco”) exists, predominantly, in an S = 3/2 spin state with spectral parameters identical to those of FeMoco in the MoFe protein. These observations provide strong support to the outcome of our previous EPR and X-ray absorption spectroscopy/extended X-ray absorption fine structure analysis of the three NifEN species while providing significant new insights into the unique electronic properties of the precursor and “FeMoco” in NifEN.
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spelling pubmed-30321862011-03-16 Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco” Rupnik, Kresimir Hu, Yilin Fay, Aaron W. Ribbe, Markus W. Hales, Brian J. J Biol Inorg Chem Original Paper NifEN plays a key role in the biosynthesis of the iron–molybdenum cofactor (FeMoco) of nitrogenase. A scaffold protein that hosts the conversion of a FeMoco precursor to a mature cofactor, NifEN can assume three conformations during the process of FeMoco maturation. One, designated ΔnifB NifEN, contains only two permanent [Fe(4)S(4)]-like clusters. The second, designated NifEN(Precursor), contains the permanent clusters and a precursor form of FeMoco. The third, designated NifEN(“FeMoco”), contains the permanent [Fe(4)S(4)]-like clusters and a fully complemented, “FeMoco”-like structure. Here, we report a variable-temperature, variable-field magnetic circular dichroism spectroscopic investigation of the electronic structure of the metal clusters in the three forms of dithionite-reduced NifEN. Our data indicate that the permanent [Fe(4)S(4)]-like clusters are structurally and electronically conserved in all three NifEN species and exhibit spectral features of classic [Fe(4)S(4)](+) clusters; however, they are present in a mixed spin state with a small contribution from the S > ½ spin state. Our results also suggest that both the precursor and “FeMoco” have a conserved Fe/S electronic structure that is similar to the electronic structure of FeMoco in the MoFe protein, and that the “FeMoco” in NifEN(“FeMoco”) exists, predominantly, in an S = 3/2 spin state with spectral parameters identical to those of FeMoco in the MoFe protein. These observations provide strong support to the outcome of our previous EPR and X-ray absorption spectroscopy/extended X-ray absorption fine structure analysis of the three NifEN species while providing significant new insights into the unique electronic properties of the precursor and “FeMoco” in NifEN. Springer-Verlag 2010-11-01 2011 /pmc/articles/PMC3032186/ /pubmed/21038112 http://dx.doi.org/10.1007/s00775-010-0728-9 Text en © The Author(s) 2010 https://creativecommons.org/licenses/by-nc/4.0/ This article is distributed under the terms of the Creative Commons Attribution Noncommercial License which permits any noncommercial use, distribution, and reproduction in any medium, provided the original author(s) and source are credited.
spellingShingle Original Paper
Rupnik, Kresimir
Hu, Yilin
Fay, Aaron W.
Ribbe, Markus W.
Hales, Brian J.
Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title_full Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title_fullStr Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title_full_unstemmed Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title_short Variable-temperature, variable-field magnetic circular dichroism spectroscopic study of NifEN-bound precursor and “FeMoco”
title_sort variable-temperature, variable-field magnetic circular dichroism spectroscopic study of nifen-bound precursor and “femoco”
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3032186/
https://www.ncbi.nlm.nih.gov/pubmed/21038112
http://dx.doi.org/10.1007/s00775-010-0728-9
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