Key result
Sulfenic acid-reactive reagents m-ClCP, NBD-Cl, and NTBA inhibit Rhodococcus and Comamonas nitrile hydratases.
Why the study?
The presence and role of the unstable sulfenic acid group in the active form of nitrile hydratase is controversial and requires further investigation.
The study identifies three novel inhibitors of nitrile hydratases and thiocyanate reagents for spectroscopic monitoring of enzyme activity.
Provides new tools for nitrile hydratase studies; leaves open mechanistic validation and applied utility.
There is growing evidence in the literature emphasizing the significance of the post-translational modification of cysteine thiols to sulfenic acids (SOH), which have been found in a number of proteins. Crystallographic and mass spectrometric evidence has shown the presence of this group in an inactive form of the industrially important enzyme nitrile hydratase (NHase). This oxidized cysteine is unique in that it forms part of the coordination sphere of the low-spin iron III at the active site of the enzyme. The presence of this unstable sulfenic group in the active form of NHase is the subject of some controversy. To try to detect this function in NHase, we have studied the inhibitory effect on nitrile hydration of reagents known to react with sulfenic acids. Two NHases were studied, namely, Rhodococcus rhodochrous R312 NHase and Comamonas testosteroni NI1 NHase, and the reagents used were meta-chlorocarbonyldicyano-phenylhydrazone (m-ClCP), 7-chloro-4-nitrobenzo-2-oxa-1,3-diazole (NBD-Cl), and 2-nitro-5-thiocyanato-benzoic acid (NTBA). Following this approach we report three novel inhibitors of NHases. In addition, we report thiocyanate reagents that can be used to monitor NHase activity spectroscopically.
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Bonnet et al. (2001) studied this question. m-ClCP, NBD-Cl, and NTBA was evaluated on Inhibitory effect on nitrile hydration. Reagents known to react with sulfenic acids (m-ClCP, NBD-Cl, and NTBA) act as novel inhibitors of Rhodococcus rhodochrous R312 and Comamonas testosteroni NI1 nitrile hydratases.
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