Issue 33, 2015

Biomimetic peptide-based models of [FeFe]-hydrogenases: utilization of phosphine-containing peptides

Abstract

Two synthetic strategies for incorporating diiron analogues of [FeFe]-hydrogenases into short peptides via phosphine functional groups are described. First, utilizing the amine side chain of lysine as an anchor, phosphine carboxylic acids can be coupled via amide formation to resin-bound peptides. Second, artificial, phosphine-containing amino acids can be directly incorporated into peptides via solution phase peptide synthesis. The second approach is demonstrated using three amino acids each with a different phosphine substituent (diphenyl, diisopropyl, and diethyl phosphine). In total, five distinct monophosphine-substituted, diiron model complexes were prepared by reaction of the phosphine-peptides with diiron hexacarbonyl precursors, either (μ-pdt)Fe2(CO)6 or (μ-bdt)Fe2(CO)6 (pdt = propane-1,3-dithiolate, bdt = benzene-1,2-dithiolate). Formation of the complexes was confirmed by UV/Vis, FTIR and 31P NMR spectroscopy. Electrocatalysis by these complexes is reported in the presence of acetic acid in mixed aqueous-organic solutions. Addition of water results in enhancement of the catalytic rates.

Graphical abstract: Biomimetic peptide-based models of [FeFe]-hydrogenases: utilization of phosphine-containing peptides

Supplementary files

Article information

Article type
Paper
Submitted
13 May 2015
Accepted
23 Jul 2015
First published
23 Jul 2015

Dalton Trans., 2015,44, 14865-14876

Author version available

Biomimetic peptide-based models of [FeFe]-hydrogenases: utilization of phosphine-containing peptides

S. Roy, T. D. Nguyen, L. Gan and A. K. Jones, Dalton Trans., 2015, 44, 14865 DOI: 10.1039/C5DT01796C

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