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Perquinolines A–C: Unprecedented Bacterial Tetrahydroisoquinolines Involving an Intriguing Biosynthesis
Authors:Yuriy Rebets,Suvd Nadmid,Constanze Paulus,Charlotte Dahlem,Jennifer Herrmann,Harald Hü  bner,Christian Rü  ckert,Alexandra K. Kiemer,Peter Gmeiner,J  rn Kalinowski,Rolf Mü  ller,Andriy Luzhetskyy
Affiliation:Yuriy Rebets,Suvd Nadmid,Constanze Paulus,Charlotte Dahlem,Jennifer Herrmann,Harald Hübner,Christian Rückert,Alexandra K. Kiemer,Peter Gmeiner,Jörn Kalinowski,Rolf Müller,Andriy Luzhetskyy
Abstract:
Metabolic profiling of Streptomyces sp. IB2014/016‐6 led to the identification of three new tetrahydroisoquinoline natural products, perquinolines A–C ( 1 – 3 ). Labelled precursor feeding studies and the cloning of the pqr biosynthetic gene cluster revealed that 1 – 3 are assembled by the action of several unusual enzymes. The biosynthesis starts with the condensation of succinyl‐CoA and l ‐phenylalanine catalyzed by the amino‐7‐oxononanoate synthase‐like enzyme PqrA, representing rare chemistry in natural product assembly. The second condensation and cyclization events are conducted by PqrG, an enzyme resembling an acyl‐CoA ligase. Last, ATP‐grasp RimK‐type ligase PqrI completes the biosynthesis by transferring a γ‐aminobutyric acid or β‐alanine moiety. The discovered pathway represents a new route for assembling the tetrahydroisoquinoline cores of natural products.
Keywords:8-amino-7-oxononanoate synthase  biosynthesis  natural product  Streptomyces  tetrahydroisoquinoline
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