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Unique Spectroscopic Properties of the H-Cluster in a Putative Sensory [FeFe] Hydrogenase.

Authors :
Chongdar N
Birrell JA
Pawlak K
Sommer C
Reijerse EJ
RĂ¼diger O
Lubitz W
Ogata H
Source :
Journal of the American Chemical Society [J Am Chem Soc] 2018 Jan 24; Vol. 140 (3), pp. 1057-1068. Date of Electronic Publication: 2018 Jan 09.
Publication Year :
2018

Abstract

Sensory type [FeFe] hydrogenases are predicted to play a role in transcriptional regulation by detecting the H <subscript>2</subscript> level of the cellular environment. These hydrogenases contain the hydrogenase domain with distinct modifications in the active site pocket, followed by a Per-Arnt-Sim (PAS) domain. As yet, neither the physiological function nor the biochemical or spectroscopic properties of these enzymes have been explored. Here, we present the characterization of an artificially maturated, putative sensory [FeFe] hydrogenase from Thermotoga maritima (HydS). This enzyme shows lower hydrogen conversion activity than prototypical [FeFe] hydrogenases and a reduced inhibition by CO. Using FTIR spectroelectrochemistry and EPR spectroscopy, three redox states of the active site were identified. The spectroscopic signatures of the most oxidized state closely resemble those of the H <subscript>ox</subscript> state from the prototypical [FeFe] hydrogenases, while the FTIR spectra of both singly and doubly reduced states show large differences. The FTIR bands of both the reduced states are strongly red-shifted relative to the H <subscript>ox</subscript> state, indicating reduction at the diiron site, but with retention of the bridging CO ligand. The unique functional and spectroscopic features of HydS are discussed with regard to the possible role of altered amino acid residues influencing the electronic properties of the H-cluster.

Details

Language :
English
ISSN :
1520-5126
Volume :
140
Issue :
3
Database :
MEDLINE
Journal :
Journal of the American Chemical Society
Publication Type :
Academic Journal
Accession number :
29251926
Full Text :
https://doi.org/10.1021/jacs.7b11287