A quantum mechanics/molecular mechanics study of the resting state of the vanadium dependent chloroperoxidase from fungi Curvularia inaequalis and of the early intermediates of the halide oxidation is reported. The investigation of different protonation states indicates that the enzyme likely consists of an anionic H2VO4- vanadate moiety where one hydroxo group is in axial position. The calculations suggest that the hydrogen peroxide binding may not involve an initial protonation of the vanadate cofactor. A low free energy reactive path is found where the hydrogen peroxide directly attacks the axial hydroxo group, resulting in the formation of an hydrogen peroxide intermediate. This intermediate is promptly protonated to yield a peroxo species. The free energy barrier for the formation of the peroxo species does not depend significantly upon the protonation state of the cofactor. The most likely protonation states of the peroxo cofactor are neutral forms HVO2(O2) with a hydroxo group either H-bonded to Ser402 or coordinated to Arg360. The peroxo cofactor is also coordinated to an axial water molecule, which could be important for the stability of the peroxovanadate/His496 adduct. Our calculations strongly suggest that the halide oxidation may take place with the preliminary formation of a peroxovanadate/halogen adduct. Subsequently, the halogen reacts with the peroxo moiety yielding a hypohalogen vanadate. The most reactive protonation state of peroxovanadate is the neutral HVO2(O2) with the hydroxo group H-bonded to Ser402. The important role of Lys353 in determining the catalytic activity is also confirmed.
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http://dx.doi.org/10.1021/jp054901b | DOI Listing |
Inorg Chem
October 2024
Department of Chemistry, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, United States.
Herein, we report the first example of Cu-promoted β -hydroxylation of substituted benzophenones using a bidentate directing group (DG) and HO as an oxidant. In addition to the new C-O bond formed, the -oxidation induces a very unusual 1,2-rearrangement of the iminyl group to the vicinal γ position. This transformation is highly dependent on the substrate utilized (favored for 4-methoxy-substituted benzophenones) and on the DG used (2-picolylamine leads to selective γ-C-H functionalization, while β -oxidation requires 2-(2-aminoethyl)pyridine).
View Article and Find Full Text PDFJ Inorg Biochem
January 2025
Freie Universität Berlin, Fachbereich Physik, Arnimallee 14, D-14195 Berlin, Germany. Electronic address:
Oxygen-tolerant [NiFe] hydrogenases are valuable blueprints for the activation and evolution of molecular hydrogen under application-relevant conditions. Vibrational spectroscopic techniques play a key role in the investigation of these metalloenzymes. For instance, resonance Raman spectroscopy has been introduced as a site-selective approach for probing metal-ligand coordinates of the [NiFe] active site and FeS clusters.
View Article and Find Full Text PDFDalton Trans
August 2024
Department of Chemistry, Himachal Pradesh University, Summer Hill, Shimla, India.
Multinuclear (di/tri) copper(II) complexes bridged through hydroxyl groups are very interesting coordination complexes owing to their potential applications in various fields. In this work, three novel dinuclear (μ-hydroxo)-bridged copper(II) complexes in the crystal form, namely, [Cu(3,5-DIFLB)(H)](HO) (1), [Cu(4-ClB)(H)](HO) (2), and [Cu(4-ETHB)(H)](HO) (3) (where DIFLB = difluorobenzoate, CLB = chlorobenzoate, ETHB = ethoxybenzoate, and H = triethanolamine), were isolated at room temperature using methanol and water in a 4 : 1 v/v ratio as a solvent. Furthermore, all three complexes (1-3) were characterised using spectroscopic (UV-vis, DRS, and FT-IR), electrochemical (CV) and single-crystal X-ray diffraction techniques.
View Article and Find Full Text PDFMolecules
July 2024
School of Natural Sciences, Massey University, Private Bag 11 222, Palmerston North 4442, New Zealand.
The syntheses, coordination chemistry, and Mössbauer spectroscopy of hepta-iron(III) complexes using derivatised salicylaldoxime ligands from two categories; namely, 'single-headed' (H) and 'double-headed' (H) salicylaldoximes are described. All compounds presented here share a [Fe-µ-O] core in which the iron(III) ions are µ-hydroxo-bridged in the complex and µ-oxo-bridged in and . Each compound consists of 2 × [Fe-µ-O] triads that are linked via a central [Fe(µ-OH)] ion.
View Article and Find Full Text PDFInorg Chem
September 2024
Department of Chemistry, Ashoka University, Sonipat, Delhi NCR, Haryana 131029, India.
A μ-oxo diiron complex, featuring the pyridine-2,6-dicarboxamide-based thiazoline-derived redox-active ligand, HL (HL = N,N-bis(4,5-dihydrothiazol-2-yl)pyridine-2,6-dicarboxamide), was synthesized and thoroughly characterized. showed electrocatalytic hydrogen evolution reaction activity in the presence of different organic acids of varying p values in dimethylformamide. Through electrochemical analysis, we found that is a precatalyst that undergoes concerted two-electron reduction to generate an active catalyst.
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