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The electronic structure of FeV-cofactor in vanadium-dependent nitrogenase.
Yang, Zhi-Yong; Jimenez-Vicente, Emilio; Kallas, Hayden; Lukoyanov, Dmitriy A; Yang, Hao; Martin Del Campo, Julia S; Dean, Dennis R; Hoffman, Brian M; Seefeldt, Lance C.
Afiliação
  • Yang ZY; Department of Chemistry and Biochemistry, Utah State University Logan UT 84322 USA nkyzy@hotmail.com lance.seefeldt@usu.edu +1-435-797-3964.
  • Jimenez-Vicente E; Department of Biochemistry, Virginia Tech Blacksburg VA 24061 USA deandr@vt.edu +1-540-231-5895.
  • Kallas H; Department of Chemistry and Biochemistry, Utah State University Logan UT 84322 USA nkyzy@hotmail.com lance.seefeldt@usu.edu +1-435-797-3964.
  • Lukoyanov DA; Department of Chemistry, Northwestern University Evanston IL 60208 USA bmh@northwestern.edu +1-847-491-3104.
  • Yang H; Department of Chemistry, Northwestern University Evanston IL 60208 USA bmh@northwestern.edu +1-847-491-3104.
  • Martin Del Campo JS; Department of Biochemistry, Virginia Tech Blacksburg VA 24061 USA deandr@vt.edu +1-540-231-5895.
  • Dean DR; Department of Biochemistry, Virginia Tech Blacksburg VA 24061 USA deandr@vt.edu +1-540-231-5895.
  • Hoffman BM; Department of Chemistry, Northwestern University Evanston IL 60208 USA bmh@northwestern.edu +1-847-491-3104.
  • Seefeldt LC; Department of Chemistry and Biochemistry, Utah State University Logan UT 84322 USA nkyzy@hotmail.com lance.seefeldt@usu.edu +1-435-797-3964.
Chem Sci ; 12(20): 6913-6922, 2021 Mar 29.
Article em En | MEDLINE | ID: mdl-34123320
ABSTRACT
The electronic structure of the active-site metal cofactor (FeV-cofactor) of resting-state V-dependent nitrogenase has been an open question, with earlier studies indicating that it exhibits a broad S = 3/2 EPR signal (Kramers state) having g values of ∼4.3 and 3.8, along with suggestions that it contains metal-ions with valencies [1V3+, 3Fe3+, 4Fe2+]. In the present work, genetic, biochemical, and spectroscopic approaches were combined to reveal that the EPR signals previously assigned to FeV-cofactor do not correlate with active VFe-protein, and thus cannot arise from the resting-state of catalytically relevant FeV-cofactor. It, instead, appears resting-state FeV-cofactor is either diamagnetic, S = 0, or non-Kramers, integer-spin (S = 1, 2 etc.). When VFe-protein is freeze-trapped during high-flux turnover with its natural electron-donating partner Fe protein, conditions which populate reduced states of the FeV-cofactor, a new rhombic S = 1/2 EPR signal from such a reduced state is observed, with g = [2.18, 2.12, 2.09] and showing well-defined 51V (I = 7/2) hyperfine splitting, a iso = 110 MHz. These findings indicate a different assignment for the electronic structure of the resting state of FeV-cofactor S = 0 (or integer-spin non-Kramers state) with metal-ion valencies, [1V3+, 4Fe3+, 3Fe2+]. Our findings suggest that the V3+ does not change valency throughout the catalytic cycle.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2021 Tipo de documento: Article