Chinese Journal of Organic Chemistry >
Study on Isolation, Identification and Bioactivity of Desferrioxamine E and Its Metal-Complexes from Streptacidiphilus jiangxiensis
Received date: 2024-01-30
Revised date: 2024-03-11
Online published: 2024-04-10
Supported by
National Key Research and Development Program of China(2022YFC2303100); National Natural Science Foundation of China(22193070); National Natural Science Foundation of China(32030002)
Research on the genus Streptacidiphilus was mainly focused on the isolation and identification of new species, with relatively less emphasis on the study of secondary metabolites. A new aluminium-complex alumioxamine (3), and two known compounds desferrioxamine E (1) and ferrioxamine E (2) were isolated from the fermentation broth of Streptacidiphilus jiangxiensis CGMCC 4.1857. Their structures were elucidated by MS, IR, NMR and single crystal X-ray diffraction technologies. Structurally, compound 3 features aluminum(III) as the central atom, which is bonded to six oxygen atoms of the ligand, forming a hexadentate complex. Furthermore, in vitro cytotoxicity assays showed that compound 1 exhibited potential inhibitory activity against four human tumor cell lines (Hela, PANC1, A375 and MHCC-97H) at a concentration of 100 μmol/L with cell viability ranging from 4.8% to 66.4%.
Jinda Li , Botao Cheng , Jiwu Huang , Wen Liu . Study on Isolation, Identification and Bioactivity of Desferrioxamine E and Its Metal-Complexes from Streptacidiphilus jiangxiensis[J]. Chinese Journal of Organic Chemistry, 2024 , 44(7) : 2377 -2380 . DOI: 10.6023/cjoc202401038
| [1] | Kim, S. B.; Lonsdale, J.; Seong, C.; Goodfellow, M. Antonie van Leeuwenhoek 2003, 83, 107. |
| [2] | Huang, Y.; Cui, Q. F.; Wang, L. M.; Rodriguez, C.; Quintana, E.; Goodfellow, M.; Liu, Z. H. Antonie van Leeuwenhoek 2004, 86, 159. |
| [3] | Wang, L. M.; Huang, Y.; Liu, Z. H.; Goodfellow, M.; Rodriguez, C. Int. J. Syst. Evol. Microbiol. 2006, 56, 1257. |
| [4] | Golinska, P.; Kim, B. Y.; Dahm, H.; Goodfellow, M. Antonie van Leeuwenhoek 2013, 104, 965. |
| [5] | Song, W.; Duan, L. P.; Jin, L. Y.; Zhao, J. W.; Jiang, S. W.; Sun, T. Y.; Guo, X. W.; Xiang, W. S.; Wang, X. J. Int. J. Syst. Evol. Microbiol. 2018, 68, 1757. |
| [6] | Roh, S. G.; Kim, M. K.; Park, S.; Yun, B. R.; Park, J.; Kim, M. J.; Kim, Y. S.; Kim, S. B. Int. J. Syst. Evol. Microbiol. 2018, 68, 3149. |
| [7] | Nouioui, I.; Klenk, H. P.; Igual, J. M.; Gulvik, C. A.; Lasker, B. A.; McQuiston, J. R. Int. J. Syst. Evol. Microbiol. 2019, 69, 1047. |
| [8] | Yu, B.; Han, C. Y.; Zhao, J. W.; Zhang, Y. T.; Shan, Q. Q.; Wu, Y.; Ju, H. X.; Xiang, W. S.; Wang, X. J. Int. J. Syst. Evol. Microbiol. 2021, 71, 004824. |
| [9] | Hwang, S.; Yun, Y.; Choi, W. H.; Kim, S. B.; Shin, J.; Lee, M. J.; Oh, D. C. J. Nat. Prod. 2019, 82, 341. |
| [10] | Elsayed, S. S.; Genta-Jouve, G.; Carrión, V. J.; Nibbering, P. H.; Siegler, M. A.; de Boer, W.; Hankemeier, T.; van Wezel, G. P. J. Org. Chem. 2020, 85, 10648. |
| [11] | Koo, M. H.; Kim, E. J.; Lee, J. H.; Han, S. J.; Lee, Y. M.; Lee, S.; Youn, U. J. Biochem. Syst. Ecol. 2023, 110, 104709. |
| [12] | Blin, K.; Shaw, S.; Augustijn, H. E.; Reitz, Z. L.; Biermann, F.; Alanjary, M.; Fetter, A.; Terlouw, B. R.; Metcalf, W. W.; Helfrich, E. J. N.; van Wezel, G. P.; Medema, M. H.; Weber, T. Nucleic Acids Res. 2023, 51, W46. |
| [13] | Kalaitzis, J. A.; Ingrey, S. D.; Chau, R.; Simon, Y.; Neilan, B. A. Aust. J. Chem. 2016, 69, 129. |
| [14] | Van der Helm, D.; Poling, M. J. Am. Chem. Soc. 1976, 98, 82. |
/
| 〈 |
|
〉 |