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Natural Product Research
Formerly Natural Product Letters
Volume 36, 2022 - Issue 11
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Research Articles

New bioactive α-pyrone from wild mushroom Paxillus involutus

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Pages 2707-2712 | Received 09 Jan 2021, Accepted 14 Apr 2021, Published online: 05 May 2021

References

  • Antkowiak R, Antkowiak WZ, Banczyk I, Mikolajczyk L. 2003. A new phenolic metabolite, involutone, isolated from the mushroom Paxillus involutus. Can J Chem. 81(1):118–124.
  • Chen S, Yong T, Xiao C, Su J, Zhang Y, Jiao C, Xie Y. 2018. Pyrrole alkaloids and ergosterols from Grifola frondosa exert anti-α-glucosidase and anti-proliferative activities. J Funct Foods. 43:196–205.
  • Chin YW, Lim SW, Kim SH, Shin DY, Suh YG, Kim YB, Kim YC, Kim J. 2003. Hepatoprotective pyrrole derivatives of Lycium chinense fruits. Bioorg Med Chem Lett. 13(1):79–81.
  • Choi JH, Ozawa N, Yamakawa Y, Nagai K, Hirai H, Kawagishi H. 2011. Leccinine A, an endoplasmic reticulum stress-suppressive compound from the edible mushroom Leccinum extremiorientale. Tetrahedron. 67(35):6649–6653.
  • Ellström M, Shah F, Johansson T, Ahrén D, Persson P, Tunlid A. 2015. The carbon starvation response of the ectomycorrhizal fungus Paxillus involutus. FEMS Microbiol Ecol. 91(4):fiv027.
  • Fujita T, Nishimura H, Kaburagi K, Mizutani J. 1994. Plant growth inhibiting α-pyrones from Alpinia speciosa. Phytochemistry. 36(1):23–27.
  • Gardes M, Bruns TD. 2010. ITS primers with enhanced specificity for basidiomycetes-application to the identification of mycorrhizae and rusts. Mol Ecol. 2(2):113–118.
  • Gelardi M, Segneri G, Ercole E, Vizzini A. 2011. Paxillus involutus f. eburneus f. nov. (Agaricomycetes, Boletales), a molecularly confirmed infraspecific taxon in the P. involutus complex from Italy. Mycosphere. 2(5):547–554.
  • Gretler R, Askitol¨ E, Kühne H, Hesse M. 1978. Die massenspektrometrische retro-Diels–Alder-Reaktion: 1,2,3,4-tetrahydroisochinolin und 1,2,3,4-tetrahydronaphthalin (Tetralin). 31. Mitteilung über massenspektrometrische Untersuchungen. HCA. 61(5):1730–1755.
  • Kalyoncu F, Oskay M, Sağlam H, Erdoğan TF, Tamer AU. 2010. Antimicrobial and antioxidant activities of mycelia of 10 wild mushroom species. J Med Food. 13(2):415–419.
  • Kato H, Sonobe H, Fujimaki M. 2008. Formation of 2-(5-hydroxymethyl-2-formylpyrrol-1-yl)alkanoic acid and its lactone in the Maillard reaction between D-glucose and amino acid. Agric Biol Chem. 41(4):711–712.
  • Liu Y, Zhou Y, Liu M, Wang Q, Li Y. 2018. Extraction optimization, characterization, antioxidant and immunomodulatory activities of a novel polysaccharide from the wild mushroom Paxillus involutus. Int J Biol Macromol. 112:326–332.
  • Mikolajczyk L, Antkowiak WZ. 2009. Structures studies of the metabolites of Paxillus involutus. Heterocycles. 79(1):423–426.
  • Nowak R, Drozd M, Mendyk E, Lemieszek M, Krakowiak O, Kisiel W, Rzeski W, Szewczyk K. 2016. A new method for the isolation of ergosterol and peroxyergosterol as active compounds of Hygrophoropsis aurantiaca and in vitro antiproliferative activity of isolated ergosterol peroxide. Molecules. 21(7):946.
  • Schmitz C, Leitner W, Franciò G. 2015. Pinene‐derived monodentate phosphoramidites for asymmetric hydrogenation. Eur J Org Chem. 2015(13):2889–2901.
  • Shin SW, Jung E, Kim S, Lee KE, Youm JK, Park D. 2013. Antagonist effects of veratric acid against UVB-induced cell damages. Molecules. 18(5):5405–5419.
  • Sun Z, Hu M, Sun Z, Zhu N, Yang J, Ma G, Xu X. 2018. Pyrrole alkaloids from the edible mushroom Phlebopus portentosus with their bioactive activities. Molecules. 23(5):1198..
  • Wang S, Bao L, Zhao F, Wang Q, Li S, Ren J, Li L, Wen H, Guo L, Liu H. 2013a. Isolation, identification, and bioactivity of monoterpenoids and sesquiterpenoids from the mycelia of edible mushroom Pleurotus cornucopiae. J Agric Food Chem. 61(21):5122–5129.
  • Wang SX, Zhang GQ, Zhao S, Xu F, Zhou Y, Li Geng X, Liu Y, Wang HX. 2013b. Purification and characterization of a novel lectin with antiphytovirus activities from the wild mushroom Paxillus involutus. Protein Peptide Lett. 20(7):767–774.
  • Yang NN, Huang SZ, Ma QY, Dai HF, Guo ZK, Yu ZF, Zhao YX. 2015. A new pyrrole alkaloid from Leccinum Extremiorientale. Chem Nat Compd. 51(4):730–732.
  • Zhang J, Li Z, Zhao L, Feng H, Shui X, Wang L-a. 2020a. Chemical constituents of Pholiota limonella. Chem Nat Compd. 56(1):188–189.
  • Zhang JX, Lv JH, Zhao LQ, Shui XX, Zhang J, Wang LA. 2020b. Coumarin-pi, a new antioxidant coumarin derivative from Paxillus involutus. Nat Prod Res. 34(9):1246–1249.
  • Zhang LY, Bai HB, Shan WG, Zhan ZJ. 2014. A new alkaloid from the mycelium of Inonotus obliquus. J Chem Res. 38(4):245–246.

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