4.5 Article

Substrate specificity and evolutionary implications of a NifDK enzyme carrying NifB-co at its active site

Journal

FEBS LETTERS
Volume 584, Issue 8, Pages 1487-1492

Publisher

WILEY
DOI: 10.1016/j.febslet.2010.02.064

Keywords

NifB-cofactor; Nitrogenase evolution; Apo-NifDK; Hydrogenase; Iron-molybdenum-cofactor

Funding

  1. NIGMS
  2. NIH [GM-35332]
  3. ERC [205442]
  4. NASA Astrobiology Institute (NAI)-Montana State University Astrobiology Biogeocatalysis Research Center [NNA08CN85A]
  5. NAI
  6. European Research Council (ERC) [205442] Funding Source: European Research Council (ERC)

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The in vitro reconstitution of molybdenum nitrogenase was manipulated to generate a chimeric enzyme in which the active site iron-molybdenum cofactor (FeMo-co) is replaced by NifB-co. The NifDK/NifB-co enzyme was unable to reduce N-2 to NH3, while exhibiting residual C2H4 and considerable H-2 production activities. Production of H-2 by NifDK/NifB-co was stimulated by N-2 and was dependent on NifH and ATP hydrolysis. Thus, NifDK/NifB-co is a useful tool to gain insights into the catalytic mechanism of nitrogenase. Furthermore, phylogenetic analysis of D and K homologs indicates that several early emerging lineages, which contain NifB, NifH and NifDK encoding genes but which lack other genes required for processing NifB-co into FeMo-co, might encode an enzyme with similar catalytic properties to NifDK/NifB-co. (C) 2010 Federation of European Biochemical Societies. Published by Elsevier B. V. All rights reserved.

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