Clark Benjamin R, Capon Robert J, Lacey Ernest, Tennant Shaun, Gill Jennifer H
Centre for Molecular Biodiversity, Institute for Molecular Bioscience, University of Queensland, Brisbane, QLD 4072, Australia.
Org Biomol Chem. 2006 Apr 21;4(8):1520-8. doi: 10.1039/b600960c. Epub 2006 Mar 16.
Detailed chemical analysis of the solid phase fermentation of an Australian Penicillium citrinum isolate has returned the known compounds citrinin (1), phenol A acid (6), dihydrocitrinone (7) and dihydrocitrinin (8), together with a novel cytotoxic dimer, dicitrinin A (5). Dicitrinin A (5) was determined to be a dimerised artefact of the major co-metabolite citrinin, and its structure solved by spectroscopic analysis and chemical modification. Analysis of the products encountered during the controlled decomposition of citrinin led to the discovery of additional citrinin dimers and delineated a plausible mechanistic pathway linking all monomeric and dimeric citrinin degradation products.
对一株澳大利亚桔青霉分离株的固相发酵进行详细化学分析,得到了已知化合物桔霉素(1)、酚A酸(6)、二氢桔霉素酮(7)和二氢桔霉素(8),以及一种新型细胞毒性二聚体双桔霉素A(5)。双桔霉素A(5)被确定为主要共代谢产物桔霉素的二聚化假象,其结构通过光谱分析和化学修饰得以解析。对桔霉素在受控分解过程中产生的产物进行分析,发现了更多桔霉素二聚体,并描绘了一条将所有单体和二聚体桔霉素降解产物联系起来的合理机制途径。