Towards Photochromic Azobenzene-Based Inhibitors for Tryptophan Synthase

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Abstract

Light regulation of drug molecules has gained growing interest in biochemical and pharmacological research in recent years. In addition, a serious need for novel molecular targets of antibiotics has emerged presently. Herein, the development of a photocontrollable, azobenzene-based antibiotic precursor towards tryptophan synthase (TS), an essential metabolic multienzyme complex in bacteria, is presented. The compound exhibited moderately strong inhibition of TS in its E configuration and five times lower inhibition strength in its Z configuration. A combination of biochemical, crystallographic, and computational analyses was used to characterize the inhibition mode of this compound. Remarkably, binding of the inhibitor to a hitherto-unconsidered cavity results in an unproductive conformation of TS leading to noncompetitive inhibition of tryptophan production. In conclusion, we created a promising lead compound for combatting bacterial diseases, which targets an essential metabolic enzyme, and whose inhibition strength can be controlled with light.

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Simeth, N. A., Kinateder, T., Rajendran, C., Nazet, J., Merkl, R., Sterner, R., … Kneuttinger, A. C. (2021). Towards Photochromic Azobenzene-Based Inhibitors for Tryptophan Synthase. Chemistry - A European Journal, 27(7), 2439–2451. https://doi.org/10.1002/chem.202004061

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