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research article

Reconstitution of [Fe]-hydrogenase using model complexes

Shima, Seigo
•
Chen, Dafa  
•
Xu, Tao  
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2015
Nature Chemistry

[Fe]-Hydrogenase catalyses the reversible hydrogenation of a methenyltetrahydromethanopterin substrate, which is an intermediate step during the methanogenesis from CO2 and H-2. The active site contains an iron-guanylylpyridinol cofactor, in which Fe2+ is coordinated by two CO ligands, as well as an acyl carbon atom and a pyridinyl nitrogen atom from a 3,4,5,6-substituted 2-pyridinol ligand. However, the mechanism of H-2 activation by [Fe]-hydrogenase is unclear. Here we report the reconstitution of [Fe]-hydrogenase from an apoenzyme using two FeGP cofactor mimics to create semisynthetic enzymes. The small-molecule mimics reproduce the ligand environment of the active site, but are inactive towards H-2 binding and activation on their own. We show that reconstituting the enzyme using a mimic that contains a 2-hydroxypyridine group restores activity, whereas an analogous enzyme with a 2-methoxypyridine complex was essentially inactive. These findings, together with density functional theory computations, support a mechanism in which the 2-hydroxy group is deprotonated before it serves as an internal base for heterolytic H-2 cleavage.

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Type
research article
DOI
10.1038/nchem.2382
Web of Science ID

WOS:000365279200013

Author(s)
Shima, Seigo
Chen, Dafa  
Xu, Tao  
Wodrich, Matthew D.  
Fujishiro, Takashi
Schultz, Katherine M.  
Kahnt, Jörg
Ataka, Kenichi
Hu, Xile  
Date Issued

2015

Publisher

Nature Publishing Group

Published in
Nature Chemistry
Volume

7

Issue

12

Start page

995

End page

1002

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LSCI  
Available on Infoscience
January 22, 2016
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/122605
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