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1 . fructigenine A C27H29N3O3 ÏàËÆ¶È:85.1% Chemical & Pharmaceutical Bulletin 1989 37 2937-2939 Structures of Fructigenines A and B, New Alkaloids Isolated from Penicillium fructigenum TAKEUCHI Kunizo ARAI,Kazutake KIMURA,Taisei MUSHIRODA and Yuzuru YAMAMOTO Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 2 . fructigenine A ÏàËÆ¶È:81.4% Marine Drugs 2014 12 1788-1814 A Practical Strategy to Discover New Antitumor Compounds by Activating Silent Metabolite Production in Fungi by Diethyl Sulphate Mutagenesis by Shi-Ming Fang, Chang-Jing Wu, Chang-Wei Li and Cheng-Bin Cui Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 3 . deacetyl fructigenines A C25H27N3 ÏàËÆ¶È:77.7% Chinese Journal of Marine Drugs 2006 25(6) 1-6 Antitumor components from sponge-derived fungus Penicillium auratiogriseum Sp-19 XIN Zhi-hong, FANG Yu-chun, ZHU Tian-jiao, DUAN Lin, GU Qian-qun, ZHU Wei-ming Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 4 . fructigenine A C27H29N3O3 ÏàËÆ¶È:77.7% Guihaia 2013 33 571-574 Chemical constituents of endophyte Penicillium sp£®DCS82 from Daphniphyllum longeracemosum YANG Yin-He, YE Ye, LI Cheng-Yun*, ZENG Ying, ZHAO Pei-Ji Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 5 . fructigenine A C27H29N3O4 ÏàËÆ¶È:74.0% Journal of Natural Products 1993 Vol 56 1707 Anacine, a New Benzodiazepine Metabolite of Penicillium aurantiogriseum Produced with Other Alkaloids in Submerged Fermentation Jane M. Boyes-Korkis, Karen A. Gurney, Julia Penn, Peter G. Mantle, John N. Bilton, Richard N. Sheppard Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 6 . Fructigenine A ÏàËÆ¶È:70.3% Marine Drugs 2012 10 559-582 Activation of the Dormant Secondary Metabolite Production by Introducing Gentamicin-Resistance in a Marine-Derived Penicillium purpurogenum G59 Yun-Jing Chai,Cheng-Bin Cui ,Chang-Wei Li,Chang-Jing Wu,Cong-Kui Tian and Wei Hua Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 7 . Roquefortine D C22H25N5O2 ÏàËÆ¶È:70.3% Tetrahedron Letters 1998 39 8401-8404 The first total synthesis of roquefortine D Wei-Chuan Chen, Madeleine M. Joulli¨¦ Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 8 . fructigenines A C27H29N3 ÏàËÆ¶È:66.6% Chinese Journal of Marine Drugs 2006 25(6) 1-6 Antitumor components from sponge-derived fungus Penicillium auratiogriseum Sp-19 XIN Zhi-hong, FANG Yu-chun, ZHU Tian-jiao, DUAN Lin, GU Qian-qun, ZHU Wei-ming Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 9 . acu-dioxomorpholine C26H28N2O3 ÏàËÆ¶È:66.6% Molecules 2014 19 10898-10921 Dereplication Guided Discovery of Secondary Metabolites of Mixed Biosynthetic Origin from Aspergillus aculeatus Lene M. Petersen, Casper Hoeck, Jens C. Frisvad, Charlotte H. Gotfredsen and Thomas O. LarsenMolecules Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 10 . sartoryglabin A C29H33N4O2 ÏàËÆ¶È:65.5% Natural Product Communications 2011 6 807-812 Sartoryglabrins, Analogs of Ardeemins, from Neosartorya glabra Anake Kijjoa, Sonia Santos, Tida Dethoup, Leka Manoch, Ana Paula Almeida,Maria Helena Vasconcelos, Artur Silva, Lu¨ªs Gales and Werner Herz Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 11 . 16N-carboxyethyl-3,12-dihydroroquefortin C25H29N5O4 ÏàËÆ¶È:62.9% Heterocycles 2003 60 1639-1644 A New 16N-Carboxyethyl Derivative of 3,12-Dihydroroquefortin Anatoly G. Kozlovsky, Valentina P. Zhelifonova, Tatiyana V. Antipova, Vladimir M. Adanin, Svetlana M. Ozerskaya, Nataliya E. Ivanushkina, Friedrich A. Gollmick, and Udo Gräfe* Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 12 . ¦Á-[(4-Cyanobenzoyl)amino]-N-[(3,4-dihydroisoquinolin-2(1H)-yl)propyl]-benzenepropanamide C29H30N4O2 ÏàËÆ¶È:62.9% Molecules 2010 15 4961-4983 Solid-Phase Synthetic Route to Multiple Derivatives of a Fundamental Peptide Unit William L. Scott, Ziniu Zhou, Paweł Zajdel, Maciej Pawłowski and Martin J. O¡¯Donnell Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 13 . Brevicompanine A C22H29N3O2 ÏàËÆ¶È:62.9% Journal of the Chemical Society, Perkin Transactions 1 1998 2823-2826 Brevicompanines A and B: new plant growth regulators produced by the fungus, Penicillium brevicompactum Miyako Kusano, Go Sotoma, Hiroyuki Koshino, Jun Uzawa, Masao Chijimatsu, Shozo Fujioka, Tsuyoshi Kawano and Yasuo Kimura Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 14 . 10b-(1,1-dimethyl2-propenyl)-3-(imidazol-4-ylmethyl-ene)-5a,10b,11,11a-tetrahydro-2H-pyrazino[1',2' :1,5]pyrrolo[2,3-b]indole-1,4(3H,6H)-dione ÏàËÆ¶È:62.9% Russian Journal of Organic Chemistry 2002 38 868-871 Reactions of Roquefortin with Alkyl Chloroformates N. G. Vinokurova, K. F. Turchin, B. P. Baskunov and M. U. Arinbasarov Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 15 . roquefortine C22H23N5O2 ÏàËÆ¶È:62.9% Experientia 1976 32 140-142 Roquefortine and isofumigaclavine A, metabolites fromPenicillium roqueforti P. M. Scott, Marie-Annick Merrien and Judith Polonsky Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 16 . 8-isopropyl-1,1-dimethoxy-6-[(E)-2-(4-methoxyphenyl)ethenyl]-11-methylheptaleno[4,5-c]furan-3(1H)-one C29H30O5 ÏàËÆ¶È:62.9% Helvetica Chimica Acta 2013 96 1488-1541 Synthesis and Characterization of New Heptalenes with Extended ¦Ð-Systems Attached to Them Sarah Maillefer-El Houar, Peter Uebelhart, Anthony Linden and Hans-J¨¹rgen Hansen Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 17 . roquefortine H C28H33N5O3 ÏàËÆ¶È:60.7% The Journal of Antibiotics 2010 63 165-170 Alkaloids from a deep ocean sediment-derived fungus Penicillium sp. and their antitumor activities Lin Du, Teng Feng, Boyu Zhao, Dehai Li, Shengxin Cai, Tianjiao Zhu, Fengping Wang, Xiang Xiao and Qianqun Gu Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 18 . 5-N-acetylardeemin C28H28N4O3 ÏàËÆ¶È:60.7% The Journal of Antibiotics 1993 46 380-386 5-N-ACETYLARDEEMIN, A NOVEL HETEROCYCLIC COMPOUND WHICH REVERSES MULTIPLE DRUG RESISTANCE IN TUMOR CELLS II. ISOLATION AND ELUCIDATION OF THE STRUCTURE OF 5-N-ACETYLARDEEMIN AND TWO CONGENERS JILL E. HOCHLOWSKI, MARK M. MULLALLY, STEPHEN G. SPANTON, DAVID N. WHITTERN, PRESTON HILL, JAMES B. MCALPINE Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 19 . 5-N-acetylardeemin C28H28N4O3 ÏàËÆ¶È:60.7% Chemistry & Biodiversity 2014 14 85-91 Four Ardeemin Analogs from Endophytic Aspergillus fumigatus SPS-02 and Their Reversal Effects on Multidrug-Resistant Tumor Cells Hua-Wei Zhang, Chen Ying and Yi-Fei Tang Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 20 . 2-((2S,3R,4S)-1,2,3,4-tetrahydro-2-(3,4-dimethoxyphenyl)-3-nitro-1-tosylquinolin-4-yl)-1-phenylethanone C32H30N2O7S ÏàËÆ¶È:60.7% Tetrahedron 2014 70 5114-5121 Asymmetric domino aza-Michael¨CMichael reaction of o-N-protected aminophenyl ¦Á,¦Â-unsaturated ketones: construction of chiral functionalized tetrahydroquinolines Shinae Kim, Ki-Tae Kang, Sung-Gon Kim Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 21 . Epiamauromine C32H36O2N4 ÏàËÆ¶È:59.3% Journal of Natural Products 1992 Vol 55 931 New Diketopiperazine Metabolites from the Sclerotia of Aspergillus ochraceus Florecita S. de Guzman, James B. Gloer, Donald T. Wicklow, Partick F. Dowd Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ 22 . roquefortine E C27H32N5O2 ÏàËÆ¶È:59.2% Journal of Natural Products 2005 68 1661-1664 Roquefortine E,a Diketopiperazine from an Australian Isolate of Gymnoascus reessii Ben Clark, Robert J. Capon, Ernest Lacey,Shaun Tennant,and Jennifer H. Gill Structure 13C NMR Structure & 13C NMR ̼Æ×Ä£Äâͼ |

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