Journal of the American Chemical Society · 2013 · 132 citations · 26 references
Austinol, a fungal meroterpenoid derived from 3,5-dimethylorsellinic acid, has a unique chemical structure with a remarkable spiro-lactone ring system. Despite the recent identification of its biosynthetic gene cluster and targeted gene-deletion experiments, the process for the conversion of protoaustinoid A (2), the first tetracyclic biosynthetic intermediate, to the spiro-lactone preaustinoid A3 (7) has remained enigmatic. Here we report the mechanistic details of the enzyme-catalyzed, stereospecific spiro-lactone ring-forming reaction, which is catalyzed by a non-heme iron-dependent dioxygenase, AusE, along with two flavin monooxygenases, the 5′-hydroxylase AusB and the Baeyer–Villiger monooxygenase AusC. Remarkably, AusE is a multifunctional dioxygenase that is responsible for the iterative oxidation steps, including the oxidative spiro-ring-forming reaction, to produce the austinol scaffold.
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Structure of a cephalosporin synthase
K. Valegård, Anke C. Terwisscha van Scheltinga, Matthew D. Lloyd et al. · Nature · 1998 · 337 citations
Hsien-Chun Lo, Ruth Entwistle, Chun‐Jun Guo et al. · Journal of the American Chemical Society · 2012 · 250 citations · Full text