Hammerschmidt Lena, Aly Amal H, Abdel-Aziz Mohammed, Müller Werner E G, Lin Wenhan, Daletos Georgios, Proksch Peter
Institut für Pharmazeutische Biologie und Biotechnologie, Heinrich-Heine-Universitaet, Universitaetsstraße 1, Geb. 26.23, D-40225 Duesseldorf, Germany.
Microbial Chemistry Department, Genetic Engineering and Biotechnology Division, National Research Center, El Behoos Street 33, Dokki-Giza 12622, Egypt.
Bioorg Med Chem. 2015 Feb 15;23(4):712-9. doi: 10.1016/j.bmc.2014.12.068. Epub 2015 Jan 3.
The soil fungus Gymnascella dankaliensis was collected in the vicinity of the Giza pyramids, Egypt. When grown on solid rice medium the fungus yielded four new compounds including 11'-carboxygymnastatin N (1), gymnastatin S (2), dankamide (3), and aranorosin-2-methylether (4), the latter having been reported previously only as a semisynthetic compound. In addition, six known metabolites (5-10) were isolated. Addition of NaCl or KBr to the rice medium resulted in the accumulation of chlorinated or brominated compounds as indicated by LC-MS analysis due to the characteristic isotope patterns observed. From the rice medium spiked with 3.5% NaCl the known chlorinated compounds gymnastatin A (11) and gymnastatin B (12) were obtained. All isolated compounds were unambiguously structurally elucidated on the basis of comprehensive spectral analysis (1D and 2D NMR, and mass spectrometry), as well as by comparison with the literature. Compounds 4, 7 and 11 showed potent cytotoxicity against the murine lymphoma cell line L5178Y (IC50 values 0.44, 0.58 and 0.64μM, respectively), whereas 12 exhibited moderate activity with an IC50 value of 5.80μM.
土壤真菌丹卡利裸囊菌是在埃及吉萨金字塔附近采集的。该真菌在固体大米培养基上生长时产生了四种新化合物,包括11'-羧基裸囊菌素N(1)、裸囊菌素S(2)、丹卡酰胺(3)和阿拉诺罗辛-2-甲醚(4),后者此前仅作为半合成化合物被报道过。此外,还分离出了六种已知的代谢产物(5 - 10)。向大米培养基中添加氯化钠或溴化钾会导致氯化或溴化化合物的积累,这通过液相色谱 - 质谱分析得以表明,因为观察到了特征性的同位素模式。从添加了3.5%氯化钠的大米培养基中获得了已知的氯化化合物裸囊菌素A(11)和裸囊菌素B(12)。所有分离出的化合物都基于全面的光谱分析(一维和二维核磁共振以及质谱)以及与文献对比,明确了其结构。化合物4、7和11对小鼠淋巴瘤细胞系L5178Y显示出强大的细胞毒性(IC50值分别为0.44、0.58和0.64μM),而12表现出中等活性,IC50值为5.80μM。