Angewandte Chemie · 2020 · 10 citations · 25 references
Unique Structural MoietyBiosynthesisCinnamoyl Lipid BiosynthesisBiochemistryCl Compounds YoussoufenesBiocatalysisNatural SciencesBioconjugationMolecular BiologyNatural Product BiosynthesisPks SystemAnalytical UltracentrifugationChemical BiologyPathway EngineeringMacromolecular AssembliesLipid Synthesis
Abstract As a unique structural moiety in natural products, cinnamoyl lipids (CLs), are proposed to be assembled by unusual type II polyketide synthases (PKSs). Herein, we demonstrate that the assembly of the CL compounds youssoufenes is accomplished by a PKS system that uniquely harbors three phylogenetically different ketosynthase/chain length factor (KS/CLF) complexes (YsfB/C, YsfD/E, and YsfJ/K). Through in vivo gene inactivation and in vitro reconstitution, as well as an intracellular tagged carrier‐protein tracking (ITCT) strategy developed in this study, we successfully elucidated the isomerase‐dependent ACP‐tethered polyunsaturated chain elongation process. The three KS/CLFs were revealed to modularly assemble different parts of the youssoufene skeleton, during which benzene ring closure happens right after the formation of an ACP‐tethered C18 polyene. Of note, the ITCT strategy could significantly contribute to the elucidation of other carrier‐protein‐dependent biosynthetic machineries.
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A chain initiation factor common to both modular and aromatic polyketide synthases
Christian Bisang, Paul F. Long, James Westcott et al. · Nature · 1999 · 277 citations
Stefan Pohle, C. Appelt, Mallorie Roux et al. · Journal of the American Chemical Society · 2011 · 121 citations
Biosynthetic Gene Cluster, Molecular Biology, Peptide Science +21