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Official Journal of the Japan Wood Research Society

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3-(4-Hydroxyphenyl)propionic acid is involved in the biosynthesis of myricanol in Myrica rubra

Abstract

There is little evidence concerning the biosynthetic pathways for cyclic diarylheptanoids. We previously demonstrated that the cyclic diarylheptanoids myricanol and myricanone were biologically synthesized from two molecules of 4-coumaric acid by the feeding of 4-[8,9-13C2]coumaric acid to young shoots of Myrica rubra. In the present study, using a 13C-labeled compound, we revealed that two molecules of 3-(4-hydroxyphenyl)propionic acid could also be a biosynthetic precursor of myricanol in M. rubra. These results indicated that both 4-coumaric acid and its dihydro-derivative were incorporated into myricanol. Competitive feeding experiments with 4-[8,9-13C2]coumaric acid and 3-(4-hydroxyphenyl)-[1-13C]propionic acid were performed in M. rubra to determine the preferential incorporation of these two precursors. 13C-NMR studies indicated that 3-(4-hydroxyphenyl)-[1-13C]propionic acid was preferentially incorporated into myricanol. The data provided evidence for a biosynthetic sequence originating from 4-coumaric acid and leading to myricanol, through 3-(4-hydroxyphenyl)propionic acid, in M. rubra.

References

  1. Begley MJ, Campbell RVM, Crombie L, Tuck B, Whiting DA (1971) Constitution and absolute configuration of meta,metabridged, strained biphenyls from Myrica nagi: X-ray analysis of 16-bromomyricanol. J Chem Soc C 1971:3634–3642

    Article  Google Scholar 

  2. Sakurai N, Yaguchi Y, Tetsuro Hirakawa T, Nagaia M, Inoue T (1991) Two myricanol glycosides from Myrica rubra and revision of the structure of isomyricanone. Phytochemistry 30:3077–3079

    Article  CAS  Google Scholar 

  3. Ishida J, Kozuka M, Wang HK, Konoshima T, Tokuda H, Okuda M, Mou XY, Nishino H, Sakurai N, Lee KH, Nagai M (2000) Antitumor-promoting effects of cyclic diarylheptanoids on Epstein-Barr virus activation and two-stage mouse skin carcinogenesis. Cancer Lett 159:135–140

    Article  CAS  PubMed  Google Scholar 

  4. Matsuda H, Yamazaki M, Matsuo K, Asanuma Y, Kubo M (2001) Anti-androgenic activity of Myricae cortex: isolation for active constituents from bark of Myrica rubra. Biol Pharm Bull 24:259–263

    Article  CAS  PubMed  Google Scholar 

  5. Norin T (1989) Stilbens, conioids and other polyaryl natural products. In: Rowe JW (ed) Natural products of woody plants I. Springer-Verlag, Berlin, pp 512–533

    Google Scholar 

  6. Inoue T (1993) Constituents of Acer nikoense and Myrica rubra. On diarylheptanoids (in Japanese). Yakugaku Zasshi 113:181–197

    CAS  PubMed  Google Scholar 

  7. Hölscher D, Schneider B (1995) A diarylheptanoid intermediate in the biosynthesis of phenylphenalenones in Anigozanthos preissi. J Chem Soc Chem Commun 525–526

  8. Kamo T, Hirai N, Tsuda M, Fujioka D, Ohigashi H (2000) Changes in the content and biosynthesis of phytoalexins in banana fruit. Biosci Biotechnol Biochem 64:2089–2098

    Article  CAS  PubMed  Google Scholar 

  9. Schneider B, Gershenzon J, Graser G, Schmitt B, Hölscher D (2003) One-dimensional 13C NMR and HPLC-1H NMR techniques for observing carbon-13 and deuterium labeling in biosynthetic studies. Phytochem Rev 2:31–43

    Article  CAS  Google Scholar 

  10. Hölscher D, Schneider B (2005) The biosynthesis of 8-phenylphenalenones from Eichhornia crassipes involves a putative aryl migration step. Phytochemistry 66:59–64

    Article  PubMed  Google Scholar 

  11. Schneider B (2007) Nuclear magnetic resonance spectroscopy in biosynthetic studies. Prog Nucl Magn Reson Spectrosc 51:155–198

    Article  CAS  Google Scholar 

  12. Kawai S, Nakata K, Ohashi M, Nishida T (2008) Myricanol and myricanone biosynthesis in Myrica rubra: incorporation of two molecules of 4-coumaric acid. J Wood Sci 54:256–260

    Article  CAS  Google Scholar 

  13. Fritzemeier K-H, Kindl H (1983) 9,10-Dihydrophenanthrenes as phytoalexins of orchidaceae. Biosynthetic studies in vitro and in vivo proving the route from l-phenylalanine to dihydro-m-coumaric acid, dihydrostilbene and dihydrophenanthrenes. Eur J Biochem 133:545–550

    Article  CAS  PubMed  Google Scholar 

  14. Reinecke T, Kindl H (1994) Characterization of bibenzyl synthase catalysing the biosynthesis of phytoalexins of orchids. Phytochemistry 35:63–66

    Article  CAS  Google Scholar 

  15. Schmitt B, Schneider B (2001) Phenylpropanoid interconversion in Anigozanthos preissii observed by high-performance liquid chromatography-nuclear magnetic resonance spectroscopy. Phytochem Anal 12:43–47

    Article  CAS  PubMed  Google Scholar 

  16. Schröder J (1997) A family of plant-specific polyketide synthase: facts and predictions. Trends Plant Sci 2:373–378

    Article  Google Scholar 

  17. Brand S, Hölscher D, Schierhorn A, Svatos A, Schröder J, Schneider B (2006) A type III polyketide synthase from Wachendorfia thyrsiflora and its role in diarylheptanoid and phenylphenalenone biosynthesis. Planta (Berl) 224:413–428

    Article  CAS  Google Scholar 

  18. Ramirez-Ahumada M del C, Timmermann BN, Gang DR (2006) Biosynthesis of curcuminoids and gingerols in turmeric (Curcuma longa) and ginger (Zingiber officinale): identification of curcuminod synthase and hydroxycinnammoyl-CoA thioesterases. Phytochemistry 67:2017–2029

    Article  Google Scholar 

  19. Katsuyama Y, Matsuzawa M, Funa N, Horinouchi S (2007) In vitro synthesis of curcuminoids by type III polyketide synthase from Oryza sativa. J Biol Chem 282:37702–37709

    Article  CAS  PubMed  Google Scholar 

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Correspondence to Shingo Kawai.

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Kawai, S., Nakata, K., Ichizawa, H. et al. 3-(4-Hydroxyphenyl)propionic acid is involved in the biosynthesis of myricanol in Myrica rubra . J Wood Sci 56, 148–153 (2010). https://doi.org/10.1007/s10086-009-1082-9

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