Monteiro Afif F, Seidl Cláudia, Severino Vanessa G P, Cardoso Carmen Lúcia, Castro-Gamboa Ian
Núcleo de Bioensaios, Biossíntese e Ecofisiologia de Produtos Naturais (NuBBE), Universidade Estadual Paulista (UNESP), Instituto de Química, Departamento de Química Orgânica, Francisco Degni 55, Araraquara, 14800-900, Brazil.
Departamento de Química, Grupo de Cromatografia de Bioafinidade e Produtos Naturais, Faculdade de Filosofia, Ciências e Letras de Ribeirão Preto, Universidade de São Paulo, Ribeirão Preto, 14040-901, São Paulo, Brazil.
R Soc Open Sci. 2017 Nov 8;4(11):170854. doi: 10.1098/rsos.170854. eCollection 2017 Nov.
Biotransformation of natural products by filamentous fungi is a powerful and effective approach to achieve derivatives with valuable new chemical and biological properties. Although diterpenoid substrates usually exhibit good susceptibility towards fungi enzymes, there have been no studies concerning the microbiological transformation of halimane-type diterpenoids up to now. In this work, we investigated the capability of (a fungus isolated from the rhizosphere of ) and (an endophyte) to transform halimane () and labdane () acids isolated from (Fabaceae). Feeding experiments resulted in the production of six derivatives, including hydroxy, oxo, formyl and carboxy analogues. Incubation of with afforded 2-oxo-derivative (), while bioconversion with provided 18,19-dihydroxy (), 18-formyl () and 18-carboxy () bioproducts. Transformation of substrate mediated by produced a 7-hydroxy () derivative, while yielded 7- () and 3-hydroxy () metabolites. Unlike , which showed a preference to transform ring B, exhibited the ability to hydroxylate both rings A and B from substrate . Additionally, compounds - were evaluated for inhibitory activity against Hr-AChE and Hu-BChE enzymes through ICER-IT-MS/MS assay.
丝状真菌对天然产物的生物转化是一种强大而有效的方法,可实现具有有价值的新化学和生物学特性的衍生物。尽管二萜类底物通常对真菌酶表现出良好的敏感性,但迄今为止尚未有关于半日花烷型二萜类化合物微生物转化的研究。在这项工作中,我们研究了从[植物名称]根际分离的[真菌名称]和一种内生真菌[内生真菌名称]对从豆科植物[植物名称]中分离出的半日花烷酸([酸的名称])和贝壳杉烷酸([酸的名称])的转化能力。饲喂实验产生了六种衍生物,包括羟基、氧代、甲酰基和羧基类似物。[底物名称]与[真菌名称]一起孵育得到2-氧代衍生物([产物名称]),而与[真菌名称]进行生物转化则得到18,19-二羟基([产物名称])、18-甲酰基([产物名称])和18-羧基([产物名称])生物产物。由[真菌名称]介导的底物[底物名称]的转化产生了一种7-羟基([产物名称])衍生物,而[真菌名称]产生了7-([产物名称])和3-羟基([产物名称])代谢物。与倾向于转化B环的[真菌名称]不同,[真菌名称]表现出能够从底物[底物名称]中羟基化A环和B环的能力。此外,通过ICER-IT-MS/MS测定法评估了化合物[化合物名称]对Hr-AChE和Hu-BChE酶的抑制活性。