Cytotoxic tetramic acid derivative produced by a plant type-III polyketide synthase

J Am Chem Soc. 2011 Apr 6;133(13):4746-9. doi: 10.1021/ja2006737. Epub 2011 Mar 10.

Abstract

The tetramic acid (2,4-pyrrolidinedione) scaffold has been recognized as an important structural feature because of its mycotoxic, antibacterial, antiviral, and antioxidant activities. This important class of natural products is reportedly produced by the type-I polyketide synthase/nonribosomal peptide synthetase (PKS/NRPS) hybrid megaenzyme systems. In contrast, the benzalacetone synthase (BAS) from Rheum palmatum is a structurally simple, plant-specific type-III PKS that catalyzes the one-step decarboxylative condensation of malonyl-CoA with 4-coumaroyl-CoA. The type-III PKS exhibits unusually broad substrate specificity and notable catalytic versatility. Here we report that R. palmatum BAS efficiently produces a series of unnatural, novel tetramic acid derivatives by the condensation of malonyl-CoA with aminoacyl-CoA thioesters chemically synthesized from L- and D-amino acids. Remarkably, the novel tetramic acid dimer D-5 formed from D-phenylalanoyl-CoA showed moderate antiproliferative activity against murine leukemia P388 cells.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Animals
  • Anti-Bacterial Agents / chemistry
  • Anti-Bacterial Agents / metabolism
  • Anti-Bacterial Agents / pharmacology*
  • Antineoplastic Agents / chemistry
  • Antineoplastic Agents / metabolism
  • Antineoplastic Agents / pharmacology*
  • Bacteria / drug effects
  • Biocatalysis
  • Biological Factors / biosynthesis
  • Biological Factors / chemistry
  • Biological Factors / pharmacology*
  • Catalytic Domain / drug effects
  • Cell Line, Tumor
  • Cell Proliferation / drug effects
  • Drug Screening Assays, Antitumor
  • Mice
  • Microbial Sensitivity Tests
  • Models, Molecular
  • Molecular Structure
  • Polyketide Synthases / chemistry
  • Polyketide Synthases / metabolism*
  • Pyrrolidinones / chemistry
  • Pyrrolidinones / metabolism
  • Pyrrolidinones / pharmacology*
  • Rheum / chemistry*
  • Rheum / enzymology
  • Rheum / metabolism
  • Stereoisomerism
  • Structure-Activity Relationship

Substances

  • Anti-Bacterial Agents
  • Antineoplastic Agents
  • Biological Factors
  • Pyrrolidinones
  • tetramic acid
  • Polyketide Synthases