Pyrazofurin Biosynthesis Involves Nonenzymatic Ring Contraction of a Pyridazine Intermediate Triggered by a Rieske
Ziyang Zheng1, Yu-Hsuan Lee2, Daan Ren2
1Department of Chemistry, University of Texas at Austin, Austin, Texas 78712, United States.
Abstract:
Pyrazofurin and formycin A are two pyrazole-containing C-nucleosides, exhibiting antibacterial, antiviral, and antitumor activities. Despite previous studies elucidating the early biosynthetic steps of pyrazole formation, how the linear hydrazone intermediate is cyclized to a pyrazole ring remains unknown. Herein, substrate analogs are used to show that the amidohydrolase PyfA mediates intramolecular cyclization of 2-hydrazinylidenepentanedioic acid to yield a 4,5-dihydropyridazine ring, which can undergo PyfO-catalyzed dehydrogenation to generate a pyridazine product. More importantly, the Rieske enzyme PyfB is demonstrated to catalyze oxygenation of 4,6-dihydroxypyridazine-3-carboxylic acid. The resulting six-membered pyridazine product is found to undergo uncatalyzed rearrangement to the five-membered pyrazole ring. This work thus highlights a unique pyrazole-forming pathway involving a rare pyridazine intermediate that undergoes oxidation-triggered nonenzymatic ring contraction to yield the pyrazole core.
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