Author
Adamson, H
Robinson, M
Wright, J
Flanagan, L
Walton, J
Elton, D
Gavaghan, D
Bond, A
Roessler, M
Parkin, A
Journal title
Journal of the American Chemical Society
DOI
10.1021/jacs.7b03611
Issue
31
Volume
139
Last updated
2022-01-12T16:31:51.767+00:00
Page
10677-10686
Abstract
The redox chemistry of the electron entry/exit site in Escherichia coli hydrogenase-1 is shown to play a vital role in tuning biocatalysis. Inspired by nature, we generate a HyaA-R193L variant to disrupt a proposed Arg-His cation-π interaction in the secondary coordination sphere of the outermost, "distal", iron-sulfur cluster. This rewires the enzyme, enhancing the relative rate of H2 production and the thermodynamic efficiency of H2 oxidation catalysis. On the basis of Fourier transformed alternating current voltammetry measurements, we relate these changes in catalysis to a shift in the distal [Fe4S4]2+/1+ redox potential, a previously experimentally inaccessible parameter. Thus, metalloenzyme chemistry is shown to be tuned by the second coordination sphere of an electron transfer site distant from the catalytic center.
Symplectic ID
708065
Publication type
Journal Article
Publication date
August 2017
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