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A Versatile Thioesterase Involved in Dimerization during Cinnamoyl Lipid Biosynthesis.

Zirong DengChunni LiuFang WangNi SongJing LiuHuayue LiSiyu LiuTong LiZengzhi LiuFei XiaoWen-Li Li
Published in: Angewandte Chemie (International ed. in English) (2024)
The cinnamoyl lipid compound youssoufene A1 (1), featuring a unique dearomatic carbon-bridged dimeric skeleton, exhibits increased inhibition against multidrug resistant Enterococcus faecalis as compared to monomeric youssoufenes. However, the formation process of this intriguing dearomatization/dimerization remains unknown. In this study, an unusual "gene-within-gene" thioesterase (TE) gene ysfF was functionally characterized. The gene was found to naturally encodes two proteins, an entire YsfF with α/β-hydrolase and 4-hydroxybenzoyl-CoA thioesterase (4-HBT)-like enzyme domains, and a nested YsfF HBT (4-HBT-like enzyme). Using an intracellular tagged carrier-protein tracking (ITCT) strategy, in vitro reconstitution and in vivo experiments, we found that: i) both domains of YsfF displayed thioesterase activities; ii) YsfF/YsfF HBT could accomplish the 6π-electrocyclic ring closure for benzene ring formation; and iii) YsfF and cyclase YsfX together were responsible for the ACP-tethered dearomatization/dimerization process, possibly through an unprecedented Michael-type addition reaction. Moreover, site-directed mutagenesis experiments demonstrated that N301, E483 and H566 of YsfF are critical residues for both the 6π-electrocyclization and dimerization processes. This study enhances our understanding of the multifunctionality of the TE protein family.
Keyphrases
  • copy number
  • multidrug resistant
  • genome wide
  • genome wide identification
  • crispr cas
  • amino acid
  • gene expression
  • cystic fibrosis
  • drug resistant
  • binding protein
  • acinetobacter baumannii
  • pseudomonas aeruginosa