2019
DOI: 10.1021/acs.jnatprod.9b00845
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Quinazoline-Containing Indole Alkaloids from the Marine-Derived Fungus Aspergillus sp. HNMF114

Abstract: Seven new quinazoline-containing indole alkaloids (1–7) named aspertoryadins A–G, along with nine known ones (8–16), were isolated from the marine-derived fungus Aspergillus sp. HNMF114 from the bivalve mollusk Sanguinolaria chinensis. The structures of the new compounds were elucidated from spectroscopic data, X-ray diffraction analysis, ECD spectra analysis, and ECD calculations. Compound 1 bears an aminosulfonyl group in the structure, which is rarely encountered in natural products. Compounds 6, 7, and 13 … Show more

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Cited by 36 publications
(25 citation statements)
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“…HNMF114 supplemented with L -tryptophan was carried out, which led to the isolation of 3 new quinazoline-containing indole alkaloids, aspertoryadins H–J ( 1 – 3 ), along with 16 known ones, tryptoquivaline H ( 4 ) ( Buttachon et al, 2012 ), norquinadoline A ( 5 ) ( Peng et al, 2013 ), epi -fiscalin D ( 6 ) ( Qian et al, 2018 ), epi -fiscalin A ( 7 ) ( Buttachon et al, 2012 ), deoxynortryptoquivaline ( 8 ) ( Lin et al, 2013 ), scequinadolines D ( 9 ) ( Huang et al, 2017 ), lapatin A ( 10 ) ( Wu and Ma, 2013 ), fiscalin A ( 11 ) ( Buttachon et al, 2012 ), oxoglyantrypine ( 12 ) ( Peng et al, 2013 ), quinadoline B ( 13 ) ( Koyama et al, 2008 ), tryptoquivalines L ( 14 ) ( Buttachon et al, 2012 ), quinadoline A ( 15 ) ( Koyama et al, 2008 ), scequinadolines E ( 16 ) ( Huang et al, 2017 ), scequinadoline G ( 17 ) ( Huang et al, 2017 ), glyantrypine ( 18 ) ( Penn et al, 1992 ), and tryptoquivalines F ( 19 ) ( Buttachon et al, 2012 ) ( Figure 1 ). Interestingly, these compounds were all different from those of our previous report ( Kong et al, 2019 ). Herein, the isolation, structure elucidation, and bioactivities of these compounds are reported.…”
Section: Introductioncontrasting
confidence: 99%
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“…HNMF114 supplemented with L -tryptophan was carried out, which led to the isolation of 3 new quinazoline-containing indole alkaloids, aspertoryadins H–J ( 1 – 3 ), along with 16 known ones, tryptoquivaline H ( 4 ) ( Buttachon et al, 2012 ), norquinadoline A ( 5 ) ( Peng et al, 2013 ), epi -fiscalin D ( 6 ) ( Qian et al, 2018 ), epi -fiscalin A ( 7 ) ( Buttachon et al, 2012 ), deoxynortryptoquivaline ( 8 ) ( Lin et al, 2013 ), scequinadolines D ( 9 ) ( Huang et al, 2017 ), lapatin A ( 10 ) ( Wu and Ma, 2013 ), fiscalin A ( 11 ) ( Buttachon et al, 2012 ), oxoglyantrypine ( 12 ) ( Peng et al, 2013 ), quinadoline B ( 13 ) ( Koyama et al, 2008 ), tryptoquivalines L ( 14 ) ( Buttachon et al, 2012 ), quinadoline A ( 15 ) ( Koyama et al, 2008 ), scequinadolines E ( 16 ) ( Huang et al, 2017 ), scequinadoline G ( 17 ) ( Huang et al, 2017 ), glyantrypine ( 18 ) ( Penn et al, 1992 ), and tryptoquivalines F ( 19 ) ( Buttachon et al, 2012 ) ( Figure 1 ). Interestingly, these compounds were all different from those of our previous report ( Kong et al, 2019 ). Herein, the isolation, structure elucidation, and bioactivities of these compounds are reported.…”
Section: Introductioncontrasting
confidence: 99%
“…The fungal information of Aspergillus sp. HNMF114 has been described in our previous report (Kong et al, 2019).…”
Section: Fungal Materialsmentioning
confidence: 73%
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“…HNMF114 from the bivalve mollusk Sanguinolaria chinensis. Notably, compounds 320 and 321 exhibited quorum sensing inhibitory activity against Chromobacterium violaceum CV026 with the MICs of 32.0, 32.0 μg/well, respectively (Kong et al 2019b). Another two analogs, tryptoquivalines R and S (322 and 323), were isolated from a marine-derived fungus Neosartorya sp.…”
Section: Quinazoline-containing Indole Alkaloidsmentioning
confidence: 99%