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展青霉素的生物合成:荨麻青霉无细胞制剂对叶状菌素和异环氧脱氧雪腐镰刀菌烯醇的代谢

Patulin biosynthesis: the metabolism of phyllostine and isoepoxydon by cell-free preparations from Pencillium urticae.

作者信息

Sekiguchi J, Gaucher G M

出版信息

Can J Microbiol. 1979 Aug;25(8):881-7. doi: 10.1139/m79-131.

Abstract

Cell-free extracts of Penicillium urticae (NRRL 2159A), and its Pat- mutants, J2, J1, and S11, were found to contain significant NADP-dependent isoepoxydon dehydrogenase activity. This reversible interconversion of the epoxides (-)-phyllostine and (+)-isoepoxydon occurred optimally at pH 5.8 and was completely inhibited by 1 mM p-chloromercuribenzoate (PCMB). The cytosol enzyme possessed specificity for both substrate and cofactor since neither (+)-epoxydon, an epimer of (+)-isoepoxydon, nor NADH was utilized. Cell extracts of the parent and of mutant J2, which is blocked before the epoxides in the patulin pathway, were found to convert phyllostine and isoepoxydon to a number of unknown metabolites which appeared as yellow spots on thin-layer chromatograms after spraying with a chromogenic reagent. Extracts of mutant J1 were unable to carry out this conversion, while whole cells of mutant S11 accumulated what appeared to be these same 'yellow' compounds. Since PCMB-treated extracts of J2 converted phyllostine but not isoepoxydon to these new metabolites, phyllostine appeared to be their more immediate precursor. The relative positions of isoepoxydon and phyllostine in the patulin pathway are discussed.

摘要

已发现荨麻青霉(NRRL 2159A)及其Pat-突变体J2、J1和S11的无细胞提取物含有显著的依赖于烟酰胺腺嘌呤二核苷酸磷酸(NADP)的异环氧脱氧酶活性。(-)-叶状青霉素和(+)-异环氧脱氧的环氧化物之间的这种可逆相互转化在pH 5.8时最佳发生,并且被1 mM对氯汞苯甲酸(PCMB)完全抑制。由于既不利用(+)-异环氧脱氧的差向异构体(+)-环氧脱氧,也不利用烟酰胺腺嘌呤二核苷酸(NADH),所以胞质溶胶酶对底物和辅因子都具有特异性。在棒曲霉素途径中环氧化物之前被阻断的亲本和突变体J2的细胞提取物,被发现可将叶状青霉素和异环氧脱氧转化为多种未知代谢物,在用显色剂喷雾后,这些代谢物在薄层色谱图上显示为黄色斑点。突变体J1的提取物无法进行这种转化,而突变体S11的完整细胞积累了似乎是这些相同的“黄色”化合物。由于用PCMB处理的J2提取物将叶状青霉素而不是异环氧脱氧转化为这些新的代谢物,所以叶状青霉素似乎是它们更直接的前体。讨论了异环氧脱氧和叶状青霉素在棒曲霉素途径中的相对位置。

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