8dbx Citations

Structural consequences of turnover-induced homocitrate loss in nitrogenase.

OpenAccess logo Nat Commun 14 1091 (2023)
Related entries: 8crs, 8enl, 8enm, 8enn, 8eno

Cited: 4 times
EuropePMC logo PMID: 36841829

Abstract

Nitrogenase catalyzes the ATP-dependent reduction of dinitrogen to ammonia during the process of biological nitrogen fixation that is essential for sustaining life. The active site FeMo-cofactor contains a [7Fe:1Mo:9S:1C] metallocluster coordinated with an R-homocitrate (HCA) molecule. Here, we establish through single particle cryoEM and chemical analysis of two forms of the Azotobacter vinelandii MoFe-protein - a high pH turnover inactivated species and a ∆NifV variant that cannot synthesize HCA - that loss of HCA is coupled to α-subunit domain and FeMo-cofactor disordering, and formation of a histidine coordination site. We further find a population of the ∆NifV variant complexed to an endogenous protein identified through structural and proteomic approaches as the uncharacterized protein NafT. Recognition by endogenous NafT demonstrates the physiological relevance of the HCA-compromised form, perhaps for cofactor insertion or repair. Our results point towards a dynamic active site in which HCA plays a role in enabling nitrogenase catalysis by facilitating activation of the FeMo-cofactor from a relatively stable form to a state capable of reducing dinitrogen under ambient conditions.

Reviews citing this publication (2)

  1. Nitrogenase beyond the Resting State: A Structural Perspective. Warmack RA, Rees DC. Molecules 28 7952 (2023)
  2. Anaerobic cryoEM protocols for air-sensitive nitrogenase proteins. Warmack RA, Wenke BB, Spatzal T, Rees DC. Nat Protoc (2024)

Articles citing this publication (2)

  1. Structural insights into the iron nitrogenase complex. Schmidt FV, Schulz L, Zarzycki J, Prinz S, Oehlmann NN, Erb TJ, Rebelein JG. Nat Struct Mol Biol 31 150-158 (2024)
  2. Mutational Analysis of the Nitrogenase Carbon Monoxide Protective Protein CowN Reveals That a Conserved C-Terminal Glutamic Acid Residue Is Necessary for Its Activity. Willard DL, Arellano JJ, Underdahl M, Lee TM, Ramaswamy AS, Fumes G, Kliman A, Wong EY, Owens CP. Biochemistry 63 152-158 (2024)