A bound reaction intermediate sheds light on the mechanism of nitrogenase.

Sippel, Daniel; Rohde, Michael; Netzer, Julia; Trncik, Christian; Gies, Jakob; Grunau, Katharina; Djurdjevic, Ivana; Decamps, Laure et al. · Science · 2018

basic_science · Level V

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Abstract

Reduction of N<sub>2</sub> by nitrogenases occurs at an organometallic iron cofactor that commonly also contains either molybdenum or vanadium. The well-characterized resting state of the cofactor does not bind substrate, so its mode of action remains enigmatic. Carbon monoxide was recently found to replace a bridging sulfide, but the mechanistic relevance was unclear. Here we report the structural analysis of vanadium nitrogenase with a bound intermediate, interpreted as a μ<sup>2</sup>-bridging, protonated nitrogen that implies the site and mode of substrate binding to the cofactor. Binding results in a flip of amino acid glutamine 176, which hydrogen-bonds the ligand and creates a holding position for the displaced sulfide. The intermediate likely represents state E<sub>6</sub> or E<sub>7</sub> of the Thorneley-Lowe model and provides clues to the remainder of the catalytic cycle.

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