4.4 Article

A Cytochrome P450-Mediated Intramolecular Carbon-Carbon Ring Closure in the Biosynthesis of Multidrug-Resistance-Reversing Lathyrane Diterpenoids

Journal

CHEMBIOCHEM
Volume 17, Issue 17, Pages 1593-1597

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/cbic.201600316

Keywords

casbene; cytochromes; diterpenoids; gene clusters; lathyranes

Funding

  1. BBSRC
  2. Innovate UK [BB/M018210/01]
  3. BBSRC [BB/M018083/1, BB/M018210/1] Funding Source: UKRI
  4. Biotechnology and Biological Sciences Research Council [BB/M018210/1, BB/M018083/1] Funding Source: researchfish

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The Euphorbiaceae produce a wide variety of bioactive diterpenoids. These include the lathyranes, which have received much interest due to their ability to inhibit the ABC transporters responsible for the loss of efficacy of many chemotherapy drugs. The lathyranes are also intermediates in the biosynthesis of range of other bioactive diterpenoids with potential applications in the treatment of pain, HIV and cancer. We report here a gene cluster from Jatropha curcas that contains the genes required to convert geranylgeranyl pyrophosphate into a number of diterpenoids, including the lathyranes jolkinolC and epi-jolkinolC. The conversion of casbene to the lathyranes involves an intramolecular carbon-carbon ring closure. This requires the activity of two cytochrome P450s that we propose form a 6-hydroxy-5,9-diketocasbene intermediate, which then undergoes an aldol reaction. The discovery of the P450 genes required to convert casbene to lathyranes will allow the scalable heterologous production of these potential anticancer drugs, which can often only be sourced in limited quantities from their native plant.

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