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Research Article

A new benzophenone derivative from Aspergillus fumigatus WJ-131

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Received 16 Mar 2023, Accepted 09 Sep 2023, Published online: 21 Sep 2023

References

  • Afiyatullov SS, Kalinovskii AI, Pivkin MV, Dmitrenok PS, Kuznetsova TA. 2004. Fumitremorgins from the marine isolate of the fungus Aspergillus fumigatus. Chem Nat Compd. 40(6):615–617. doi:10.1007/s10600-005-0058-2.
  • Cai XY, Wang JP, Shu Y, Hu JT, Sun CT, Cai L, Ding ZT. 2022. A new cytotoxic indole alkaloid from the fungus Penicillium polonicum TY12. Nat Prod Res. 36(9):2270–2276. doi:10.1080/14786419.2020.1828406.
  • Cheng Z-b, Liu Y, Yang F, Zhang X, Qiao Y, Xu W, Li Q. 2023. Polyketides and alkaloids from the deep-sea-derived fungus Aspergillus fumigatus CBC18132. Rec Nat Prod. 17(2):352–357. doi:10.25135/rnp.348.2204.2447.
  • Ding H, Wang JP, Deng SP, Gan JL, Li BX, Yao LL, Zhang SQ, Cai L, Ding ZT. 2023. A new sesquiterpenoid from the aconitum-derived fungus Aspergillus fumigatus M1. Nat Prod Res. 37(20):3443–3451. doi:10.1080/14786419.2022.2080207.
  • El Ashry ESH, Atta ur R, Choudhary MI, Kandil SH, El Nemr A, Gulzar T, Shobier AH. 2011. Studies on the constituents of the green alga Ulva lactuca. Chem Nat Compd. 47(3):335–338. doi:10.1007/s10600-011-9926-0.
  • El-Sayed ASA, Shindia AA, Ali GS, Yassin MA, Hussein H, Awad SA, Ammar HA. 2021. Production and bioprocess optimization of antitumor Epothilone B analogue from Aspergillus fumigatus, endophyte of Catharanthus roseus, with response surface methodology. Enzyme Microb Technol. 143:109718. doi:10.1016/j.enzmictec.2020.109718.
  • Gan D, Wang CY, Li CZ, Zhu L, Zhang XR, Ding H, Cai L, Ding Z. 2022. Secondary metabolites from Annulohypoxylon sp. and structural revision of Emericellins A and B. J Nat Prod. 85(4):828–837. doi:10.1021/acs.jnatprod.1c00922.
  • Ge HM, Yu ZG, Zhang J, Wu JH, Tan RX. 2009. Bioactive alkaloids from endophytic Aspergillus fumigatus. J Nat Prod. 72(4):753–755. doi:10.1021/np800700e.
  • Guo DL, Li XH, Feng D, Jin MY, Cao YM, Cao ZX, Gu YC, Geng Z, Deng F, Deng Y. 2018. Novel polyketides produced by the endophytic fungus Aspergillus Fumigatus from Cordyceps Sinensis. Molecules. 23(7):1709. doi:10.3390/molecules23071709.
  • Hyun SK, Lee H, Kang SS, Chung HY, Choi JS. 2009. Inhibitory activities of Cassia tora and its anthraquinone constituents on angiotensin-converting enzyme. Phytother Res. 23(2):178–184. doi:10.1002/ptr.2579.
  • Ibrahim SRM, Elkhayat ES, Mohamed GA, Khedr AIM, Fouad MA, Kotb MHR, Ross SA. 2015. Aspernolides F and G, new butyrolactones from the endophytic fungus Aspergillus terreus. Phytochem Lett. 14:84–90. doi:10.1016/j.phytol.2015.09.006.
  • Jiao RH, Xu S, Liu JY, Ge HM, Ding H, Xu C, Zhu H, Tan R-X. 2006. Chaetominine, a cytotoxic alkaloid produced by endophytic Chaetomium sp. IFB-E015. Org Lett. 8(25):5709–5712. doi:10.1021/ol062257t.
  • Kang D, Son GH, Park HM, Kim J, Choi JN, Kim HY, Lee S, Hong SB, Lee CH. 2013. Culture condition-dependent metabolite profiling of Aspergillus fumigatus with antifungal activity. Fungal Biol. 117(3):211–219. doi:10.1016/j.funbio.2013.01.009.
  • Kim YK, Tomoda H, Nishida H, Sunazuka T, Obata R, Omura S. 1994. Pyripyropenes, novel inhibitors of acyl-CoA:cholesterol acyltransferase produced by Aspergillus fumigatus. I. Production, isolation, and biological properties. J Antibiot (Tokyo). 47(2):154–162. doi:10.7164/antibiotics.47.154.
  • Li BX, Shu Y, Zhang SQ, Yang RD, Yao LL, Liu JQ, Liu SX, Wang JP, Cai L. 2023. Macrostines A and B: tetracyclic fisicoccane from the fungus Periconia macrospinosa WTG-10. Fitoterapia. 165:105429. doi:10.1016/j.fitote.2023.105429.
  • Liang X-A, Ma Y-M, Zhang H-C, Liu R. 2016. A new helvolic acid derivative from an endophytic Fusarium sp. of Ficus carica. Nat Prod Res. 30(21):2407–2412. doi:10.1080/14786419.2016.1190722.
  • Liu L, Ni HF, Qiu X, Wan L, Zhao M. 2021. Cytotoxic tetracyclic triterpenes from the endophytic fungus Aspergillus fumigatus of Cleidion brevipetiolatum. Phytochem Lett. 44:87–89. doi:10.1016/j.phytol.2021.06.005.
  • Liu J, Wei X, La Kim E, Lin X, Yang XW, Zhou X, Yang B, Jung JH, Liu Y. 2015. New glucosidated pyrazinoquinazoline indole alkaloids from fungus Aspergillus fumigatus derived of a jellyfish. Tetrahedron. 71(2):271–275. doi:10.1016/j.tet.2014.11.063.
  • Liu R, Zhu W, Zhang Y, Zhu T, Liu H, Fang Y, Gu Q. 2006. A new diphenyl ether from marine-derived fungus Aspergillus sp. B-F-2. J Antibiot (Tokyo). 59(6):362–365. doi:10.1038/ja.2006.52.
  • Ma YM, Li Y, Liu JY, Song YC, Tan RX. 2004. Anti-Helicobacter pylori metabolites from Rhizoctonia sp. Cy064, an endophytic fungus in Cynodon dactylon. Fitoterapia. 75(5):451–456. doi:10.1016/j.fitote.2004.03.007.
  • Qin L, Li B, Guan J, Zhang G. 2007. Chemical study on Aspergillus sp. 136. Chinese J Appl Environ Biol. 13:66–68.
  • Ren H, Cao X-l, Wang Q-e, Xv C-m 2011. Antitumor metabolites from fungus Aspergillus sydowi D2-6. Chinese Pharmaceutical J. 46:569–575.
  • Samson RA, Visagie CM, Houbraken J, Hong SB, Hubka V, Klaassen CHW, Perrone G, Seifert KA, Susca A, Tanney JB, et al. 2014. Phylogeny, identification and nomenclature of the genus Aspergillus. Stud Mycol. 78(1):141–173. doi:10.1016/j.simyco.2014.07.004.
  • Shu Y, Wang JP, Li BX, Gan JL, Ding H, Liu R, Cai L, Ding ZT. 2022. Bioactive cytochalasans from the fungus Arthrinium arundinis DJ-13. Phytochemistry. 194:113009. doi:10.1016/j.phytochem.2021.113009.
  • Song Z, Liu Y, Gao J, Hu J, He H, Dai S, Wang L, Dai H, Zhang L, Song F. 2021. Antitubercular metabolites from the marine-derived fungus strain Aspergillus fumigatus MF029. Nat Prod Res. 35(16):2647–2654. doi:10.1080/14786419.2019.1660331.
  • Sright JLC, McInnes AG, Shimizu S, Smith DG, Walter JA, Idler D, Khalil W. 1978. Identification of C-24 alkyl epimers of marine sterols by 13C nuclear magnetic resonance spectroscopy. Can J Chem. 56(14):1898–1903. doi:10.1139/v78-308.
  • Su S, Yang XQ, Yang YB, Ding ZT. 2023. Three new fumagillol analogues and antifungal activity from Aspergillus fumigatus cocultured with Paraphaeosphaeria sp. Fitoterapia. 165:105395. doi:10.1016/j.fitote.2022.105395.
  • Wang C-Y, Gan D, Li C-Z, Zhang S-Q, Li B-X, Zhu L, Liu J-Q, Liu H, Tuo G-T, Zhang F-M, et al. 2022a. A new highly oxygenated polyketide derivative from Trichoderma sp. and its antifungal activity. Chem Biodivers. 19(12):e202200671. doi:10.1002/cbdv.202200671.
  • Wang CY, Gan D, Li CZ, Zhu L, Zhang XR, Li YN, Wu XH, Zhou H, Cai L. 2022b. A new cyclohexenone derivative from phomopsis sp. XM-01. Nat Prod Res. 24:1–5. doi:10.1080/14786419.2022.2127707.
  • Xu J, Song Y-C, Guo Y, Mei Y, Tan R. 2014. Fumigaclavines D-H, new ergot alkaloids from endophytic Aspergillus fumigatus. Planta Med. 80(13):1131–1137. doi:10.1055/s-0034-1382958.
  • Xu ZY, Zhang XX, Ma JK, Yang Y, Zhou J, Xu J. 2020. Secondary metabolites produced by mangrove endophytic fungus Aspergillus fumigatus HQD24 with immunosuppressive activity. Biochem Syst Ecol. 93:104166. doi:10.1016/j.bse.2020.104166.
  • Zhang M, Fang YC, Zhu T-J, Zhao WY, Gu Q, Han X, Zhu W. 2007. Study on indole-quinazolines alkaloids from marine-derived fungus Aspergillus sydowi PFW-13 and their anti-tumor activities. Chinese Pharmaceutical J. 42:1848–1851.
  • Zhang R, Wang H, Chen B, Dai H, Sun J, Han J, Liu H. 2022a. Discovery of Anti-MRSA secondary metabolites from a marine-derived fungus Aspergillus fumigatus. Mar Drugs. 20(5):302. doi:10.3390/md20050302.
  • Zhang L-h, Wang J-j, Hong K, Lin Y-c, Li J, Liu L. 2017. Secondary metabolites of mangrove endophytic fungus Aspergillus sp. 085035. J Chinese Med Mater. 40:342–346.
  • Zhang SQ, Wang JP, Zhang FM, Yao LL, Li BX, Li YN, Gan D, Mei RF, Cai L, Ding ZT. 2022b. Investigations of specialised metabolites of endophyte Diaporthe destruens hosted in Illigera orbiculata C. Y. Wu. Phytochemistry. 203:113357. doi:10.1016/j.phytochem.2022.113357.
  • Zhao WY, Yi J, Chang YB, Sun CP, Ma XC. 2022. Recent studies on terpenoids in Aspergillus fungi: chemical diversity, biosynthesis, and bioactivity. Phytochemistry. 193:113011. doi:10.1016/j.phytochem.2021.113011.
  • Zhu L, Wang JP, Hao F, Gan D, Zhang XR, Li CZ, Wang CY, Zhang L, Cai L. 2023. A new cyclopentenone derivative from Trichoderma atroviride HH-01. Nat Prod Res. 37(7):1205–1211. doi:10.1080/14786419.2021.1984912.
  • Zhu PF, Zhao YL, Dai Z, Qin XJ, Yuan HL, Jin Q, Wang YF, Liu YP, Luo XD. 2020. Phenolic amides with immunomodulatory activity from the nonpolysaccharide fraction of Lycium barbarum Fruits. J Agric Food Chem. 68(10):3079–3087. doi:10.1021/acs.jafc.9b07499.

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