bioRxiv · 10.64898/2026.08.02.742302
Covalent bond formation caught in a LOV photoreceptor
Abstract
Light-oxygen-voltage (LOV) domains are blue-light photoreceptors of plants, algae and fungi, and among the most widely used tools in optogenetics. They switch on by forming a covalent thioether bond between a conserved cysteine and their flavin chromophore, in a reaction that needs a proton to cross from the cysteine to the flavin through a pocket containing essentially no water. Its mechanism has been debated for two decades1, and because the chemistry is over within a microsecond its elementary steps have stayed hidden. Here we combine 10 time-resolved serial femtosecond crystallography snapshots and infrared spectroscopy with QM/MM calculations to resolve the entire sequence of events at 1.4 [A] resolution: from excited-state distortion of the flavin ring (10-100 ps), through hydration of a surface channel (10 ns) and a single ordered water reaching the active site as the reactive cysteine shifts between its conformations (100-500 ns), to the thioether bond itself, caught half-formed at 1 {micro}s (half the molecules reacted, half still poised) and complete at 10-100 {micro}s. That water bridges the cysteine and the flavin and shuttles the proton, lowering the barrier from [~]35 to [~]15 kcal/mol and accelerating the reaction by roughly fourteen orders of magnitude (without it, the half-life would be [~]237,000 years), then departs before the bond forms. Proteins can therefore hydrate a dehydrated active site transiently and on demand to overcome otherwise prohibitive reaction barriers, a catalytic strategy that reaches well beyond photoreceptors.
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Olasz, B., Gotthard, G., Nag, P., Gonzalez-Viegas, M., Mous, S., Koczurowska, A., Johnson, P. J. M., Sato, T., Shankar, M. K., Wranik, M., Solecka, A., Melo, D., Ke, R., James, D., Nass, K., Langner, P., Valerio, J., Furrer, A., Gashi, D., de Wijn, R., Popelar, T., Pachota, M., Wisniewska, M., Dietze, T., E, J., Asghar, A., Zabelskii, D., Trost, F., Koua, F. H. M., Smyth, P., Sobolev, E., Kim, C., Ozerov, D., Letrun, R., Turkot, O., Doerner, K., Bielecki, J., Han, H., Dworkowski, F., Cirelli, C., Schertler, G. F. X., Schulz, J., Bacellar, C., Standfuss, J., Bean, R., Milne, C., Heberle, J., Sc. 2026-08-06. Covalent bond formation caught in a LOV photoreceptor. https://doi.org/10.64898/2026.08.02.742302
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