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Natural Product Research
Formerly Natural Product Letters
Volume 35, 2021 - Issue 10
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Research Articles

Cytotoxic p-terphenyls from the deep-sea-derived Aspergillus candidus

, , , , , , , & ORCID Icon show all
Pages 1627-1631 | Received 25 May 2019, Accepted 15 Jun 2019, Published online: 24 Jun 2019

References

  • Biggins JB, Liu XF, Feng ZY, Brady SF. 2011. Metabolites from the induced expression of cryptic single operons found in the genome of Burkholderia pseudomallei. J Am Chem Soc. 133(6):1638–1641.
  • Buttachon S, Ramos AA, Inacio A, Dethoup T, Gales L, Lee M, Costa PM, Silva AMS, Sekeroglu N, Rocha E, et al. 2018. Bis-indolyl benzenoids, hydroxypyrrolidine derivatives and other constituents from cultures of the marine sponge-associated fungus Aspergillus candidus KUFA0062. Mar Drugs. 16(4):119–131.
  • Kamigauchi T, Sakazaki R, Nagashima K, Kawamura Y, Yasuda Y, Matsushima K, Tani H, Takahashi Y, Ishii K, Suzuki R, et al. 1998. Terprenins, novel immunosuppressants produced by Aspergillus candidus. J Antibiot. 51(4):445–450.
  • Klich MA. 2002. Biogeography of Aspergillus species in soil and litter. Mycologia. 94(1):21–27.
  • Kurobane I, Vining LC, McInnes AG, Smith DG. 1979. 3-Hydroxyterphenyllin, a new metabolite of Aspergillus candidus. Structure elucidation by H and C nuclear magnetic resonance spectroscopy. J Antibiot. 32(6):559–564.
  • Lin WX, Xie CL, Zhou M, Xia ML, Zhou TT, Chen HF, Yang XW, Yang Q. 2018. Chemical constituents from the deep sea-derived Streptomyces xiamenensis MCCC 1A01570 and their effects on RXRα transcriptional regulation. Nat Prod Res. 32.
  • Liu JK. 2006. Natural terphenyls: developments since 1877. Chem Rev. 106(6):2209–2223.
  • Ma J, Zhang XL, Wang Y, Zheng JY, Wang CY, Shao CL. 2017. Aspergivones A and B, two new flavones isolated from a gorgonian-derived Aspergillus candidus fungus. Nat Prod Res. 31(1):32–36.
  • Marchelli R, Vining LC. 1975. Terphenyllin, a novel p-terphenyl metabolite from Aspergillus candidus. J Antibiot. 28(4):328–331.
  • Munden JE, Butterworth D, Hanscomb G, Verrall MS. 1970. Production of chlorflavonin, an antifungal metabolite of Aspergillus candidus. Appl Microbiol. 19(5):718–720.
  • Nakagawa F, Takahashi S, Naito A, Sato S, Iwabuchi S, Tamura C. 1984. Terferol, an inhibitor of cyclic adenosine 3',5'-monophosphate phosphodiesterase. II. Structural elucidation. J Antibiot. 37(1):10–12.
  • Niu S, Zhou TT, Xie CL, Zhang GY, Yang XW. 2017. Microindolinone A, a novel 4,5,6,7-tetrahydroindole, from the deep-sea-derived actinomycete Microbacterium sp. MCCC 1A11207. Mar Drugs. 15(7):230.
  • Park JW, Choi SY, Hwang HJ, Kim YB. 2005. Fungal mycoflora and mycotoxins in Korean polished rice destined for humans. Int J Food Microbiol. 103(3):305–314.
  • Rabie CJ, Lubben A, Marais GJ, Jansen van Vuuren H. 1997. Enumeration of fungi in barley. Int J Food Microbiol. 35(2):117–127.
  • Takahashi C, Yoshihira K, Natori S, Umeda M. 1976. The structures of toxic metabolites of Aspergillus candidus. I. The compounds A and E, cytotoxic p-terphenyls. Chem Pharm Bull. 24(4):613–620.
  • Taligoola HK, Ismail MA, Chebon SK. 2004. Mycobiota associated with rice grains marketed in Uganda. J Biol Sci. 4:271–278.
  • Varga J, Frisvad JC, Samson RA. 2007. Polyphasic taxonomy of Aspergillus section Candidi based on molecular, morphological and physiological data. Stud Mycol. 59:75–88.
  • Wang R, Guo ZK, Li XM, Chen FX, Zhan XF, Shen MH. 2015. Spiculisporic acid analogues of the marine-derived fungus, Aspergillus candidus strain HDf2, and their antibacterial activity. Antonie Van Leeuwenhoek. 108(1):215–219.
  • Wei H, Inada H, Hayashi A, Higashimoto K, Pruksakorn P, Kamada S, Arai M, Ishida S, Kobayashi M. 2007. Prenylterphenyllin and its dehydroxyl analogs, new cytotoxic substances from a marine-derived fungus Aspergillus candidus IF10. J Antibiot. 60(9):586–590.
  • Xie CL, Liu Q, Xia JM, Gao Y, Yang Q, Shao ZZ, Liu G, Yang XW. 2017. Anti-allergic compounds from the deep-sea-derived actinomycete Nesterenkonia flava MCCC 1K00610. Mar Drugs. 15(3):71.
  • Xie CL, Niu S, Xia JM, Peng K, Zhang GY, Yang XW. 2018. Saccharopolytide A, a new cyclic tetrapeptide with rare 4-hydroxy-proline moieties from the deep-sea derived actinomycete Saccharopolyspora cebuensis MCCC 1A09850. Nat Prod Res. 32(14):1627–1631.
  • Xie CL, Xia JM, Su RQ, Li J, Liu Y, Yang XW, Yang Q. 2018. Bacilsubteramide A, a new indole alkaloid, from the deep-sea-derived Bacillus subterraneus 11593. Nat Prod Res. 32(21):2553–2557.
  • Xu K, Gao Y, Li YL, Xie F, Zhao ZT, Lou HX. 2018. Cytotoxic p-terphenyls from the endolichenic fungus Floricola striata. J Nat Prod. 81(9):2041–2049.
  • Yang XW, Peng K, Liu Z, Zhang GY, Li J, Wang N, Steinmetz A, Liu Y. 2013. Strepsesquitriol, a rearranged zizaane-type sesquiterpenoid from the deep-sea-derived actinomycete Streptomyces sp. SCSIO 10355. J Nat Prod. 76(12):2360–2363.

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