Acta Pharmaceutica Sinica B (Feb 2021)

A four-protein metabolon assembled by a small peptide protein creates the pentacyclic carbonate ring of aldgamycins

  • Qiaozhen Wang,
  • Xiaolong Tang,
  • Ping Dai,
  • Chuanxi Wang,
  • Weiyang Zhang,
  • Guodong Chen,
  • Kui Hong,
  • Dan Hu,
  • Hao Gao,
  • Xinsheng Yao

Journal volume & issue
Vol. 11, no. 2
pp. 588 – 597

Abstract

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Organic carbonates (OCs) are a class of compounds featured by a carbonyl flanked by two alkoxy/aryloxy groups. They exist in either linear or cyclic forms, of which the majority encountered in nature adopt a pentacyclic structure. However, the enzymatic basis for pentacyclic carbonate ring formation remains elusive. Here, we reported that a four-protein metabolon (AlmUII–UV) assembled by a small peptide protein (AlmUV) appends a reactive N-hydroxylcarbamoyl moiety to the decarboxylated aldgamycins followed by a non-enzymatic condensation to give the pentacyclic carbonate ring. Our results have documented an unprecedent mechanism for carbonate formation.

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