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Shimalactone Biosynthesis Involves Spontaneous Double Bicyclo-Ring Formation with 8π-6π Electrocyclization.

Isao FujiiMakoto HashimotoKaori KonishiAkiko UnezawaHaruka SakurabaKenta SuzukiHarue TsushimaMiho IwasakiSatsuki YoshidaAkane KudoRina FujitaAika HichiwaKoharu SaitoTakashi AsanoJun IshikawaDaigo WakanaYukihiro GodaAyumi WatanabeMamoru WatanabeYui MasumotoJunichiro KanazawaHajime SatoMasanobu Uchiyama
Published in: Angewandte Chemie (International ed. in English) (2020)
Shimalactones A and B are neuritogenic polyketides possessing characteristic oxabicyclo[2.2.1]heptane and bicyclo[4.2.0]octadiene ring systems that are produced by the marine fungus Emericella variecolor GF10. We identified a candidate biosynthetic gene cluster and conducted heterologous expression analysis. Expression of ShmA polyketide synthase in Aspergillus oryzae resulted in the production of preshimalactone. Aspergillus oryzae and Saccharomyces cerevisiae transformants expressing ShmA and ShmB produced shimalactones A and B, thus suggesting that the double bicyclo-ring formation reactions proceed non-enzymatically from preshimalactone epoxide. DFT calculations strongly support the idea that oxabicyclo-ring formation and 8π-6π electrocyclization proceed spontaneously after opening of the preshimalactone epoxide ring through protonation. We confirmed the formation of preshimalactone epoxide in vitro, followed by its non-enzymatic conversion to shimalactones in the dark.
Keyphrases
  • saccharomyces cerevisiae
  • poor prognosis
  • genome wide identification
  • genome wide
  • transcription factor
  • long non coding rna
  • molecular docking