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串珠镰刀菌的可诱导且含细胞色素P450的脱氢表雄酮7α-羟化酶系统。

The inducible and cytochrome P450-containing dehydroepiandrosterone 7alpha-hydroxylating enzyme system of Fusarium moniliforme.

作者信息

Cotillon A C, Doostzadeh J, Morfin R

机构信息

Laboratoire de Biotechnologie, Conservatoire National des Arts et Métiers, Paris, France.

出版信息

J Steroid Biochem Mol Biol. 1997 Aug;62(5-6):467-75. doi: 10.1016/s0960-0760(97)00060-5.

Abstract

7Alpha-hydroxylation of DHEA by Fusarium moniliforme was investigated with regard to inducibility and characterization of the responsible enzyme system. Using GC/MS, the 7-hydroxylated metabolites of DHEA produced after biotransformation by Fusarium moniliforme mycelia were identified. The strain of Fusarium moniliforme hydroxylated DHEA predominantly at the 7alpha-position, with minor hydroxylation occurring at the 7beta-position. Constitutive 7alpha-hydroxylation activity was low, but DHEA induced the enzyme complex responsible for 7alpha-hydroxylation via an increase in protein synthesis. DHEA 7alpha-hydroxylase was found to be mainly microsomal, and the best production yields of 7alpha-hydroxy-DHEA (28.5 +/- 3.51 pmol/min/mg protein) were obtained with microsomes prepared from 18-h-induced mycelia. Kinetic parameters (KM=1.18 +/- 0.035 microM and Vmax=909 +/- 27 pmol/min/mg protein) were determined. Carbon monoxide inhibited 7alpha-hydroxylation of DHEA by microsomes of Fusarium moniliforme. Also, exposure of mycelia to DHEA increased microsomal P450 content. These results demonstrated that: (i) DHEA is 7alpha-hydroxylated by microsomes of Fusarium moniliforme; (ii) DHEA induces Fusarium moniliforme 7alpha-hydroxylase; (iii) this enzyme complex contains a cytochrome P450.

摘要

针对串珠镰刀菌对脱氢表雄酮(DHEA)的7α-羟基化作用,研究了其诱导性及相关酶系统的特性。利用气相色谱/质谱联用仪(GC/MS),鉴定了串珠镰刀菌菌丝体生物转化后产生的DHEA的7-羟基化代谢产物。串珠镰刀菌菌株主要在7α位对DHEA进行羟基化,在7β位有少量羟基化。组成型7α-羟基化活性较低,但DHEA通过增加蛋白质合成诱导负责7α-羟基化的酶复合物。发现DHEA 7α-羟化酶主要存在于微粒体中,用18小时诱导的菌丝体制备的微粒体获得了7α-羟基-DHEA的最佳产量(28.5±3.51 pmol/分钟/毫克蛋白质)。测定了动力学参数(KM = 1.18±0.035 microM,Vmax = 909±27 pmol/分钟/毫克蛋白质)。一氧化碳抑制串珠镰刀菌微粒体对DHEA的7α-羟基化作用。此外,将菌丝体暴露于DHEA会增加微粒体P450含量。这些结果表明:(i)DHEA被串珠镰刀菌微粒体7α-羟基化;(ii)DHEA诱导串珠镰刀菌7α-羟化酶;(iii)该酶复合物含有细胞色素P450。

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