J. Am. Chem. Soc., 130 (13), 4533 -4540, 2008. 10.1021/ja711187e S0002-7863(71)01187-9
Web Release Date: March 7, 2008

Copyright © 2008 American Chemical Society

Dithiomethylether as a Ligand in the Hydrogenase H-Cluster

Arti S. Pandey, Travis V. Harris, Logan J. Giles, John W. Peters,* and Robert K. Szilagyi*

Department of Chemistry and Biochemistry and Astrobiology Biogeocatalysis Research Center, Montana State University, Bozeman, Montana 59717

john.peters@chemistry.montana.edu; szilagyi@montana.edu

Received December 17, 2007

Abstract:

An X-ray crystallographic refinement of the H-cluster of [FeFe]-hydrogenase from Clostridium pasteurianum has been carried out to close-to atomic resolution and is the highest resolution [FeFe]-hydrogenase presented to date. The 1.39 Å, anisotropically refined [FeFe]-hydrogenase structure provides a basis for examining the outstanding issue of the composition of the unique nonprotein dithiolate ligand of the H-cluster. In addition to influencing the electronic structure of the H-cluster, the composition of the ligand has mechanistic implications due to the potential of the bridge-head -group participating in proton transfer during catalysis. In this work, sequential density functional theory optimizations of the dithiolate ligand embedded in a 3.5-3.9 Å protein environment provide an unbiased approach to examining the most likely composition of the ligand. Structural, conformational, and energetic considerations indicate a preference for dithiomethylether as an H-cluster ligand and strongly disfavor the dithiomethylammonium as a catalytic base for hydrogen production.


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