bioRxiv · 10.1101/470336
A revised biosynthetic pathway for the cofactor F420 in bacteria
Abstract
Cofactor F420 plays critical roles in primary and secondary metabolism in a range of bacteria and archaea as a low-potential hydride transfer agent. It mediates a variety of important redox transformations involved in bacterial persistence, antibiotic biosynthesis, pro-drug activation and methanogenesis. However, the biosynthetic pathway for F420 has not been fully eluci-dated: neither the enzyme that generates the putative intermediate 2-phospho-L-lactate, nor the function of the FMN-binding C-terminal domain of the {gamma}-glutamyl ligase (FbiB) in bacteria are known. Here we show that the guanylyltransferases FbiD and CofC accept phosphoenolpyruvate, rather than 2-phospho-L-lactate, as their substrate, leading to the formation of the previously uncharacterized intermediate, dehydro-F420-0. The C-terminal domain of FbiB then utilizes FMNH2 to reduce dehydro-F420-0, which produces mature F420 species when combined with the {gamma}-glutamyl ligase activity of the N-terminal domain. This new insight has allowed the heterologous expression F420 from a recombinant F420 biosynthetic pathway in Escherichia coli.
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Bashiri, G., Antoney, J. P., Jirgis, E. N. M., Shah, M. V., Ney, B., Copp, J., Stutely, S. M., Sreebhavan, S., Palmer, B., Middleditch, M., Tokuriki, N., Greening, C., Baker, E. N., Scott, C., Jackson, C. J.. 2018-11-15. A revised biosynthetic pathway for the cofactor F420 in bacteria. https://doi.org/10.1101/470336
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