甾醇氧化酶编码基因缺失的耻垢分枝杆菌mc2155的产生和鉴定

A. Byakov, M. Karpov, N. Strizhov, M. Donova
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摘要

快速生长的腐坏菌耻垢分枝杆菌mc2155能够利用植物和动物固醇,并可用于创造产生生物活性类固醇的基因工程菌株。在某些放线菌中,3β-羟基的氧化和Δ5(6)→Δ4(5)双键异构化随后由甾醇形成甾酮被认为是类固醇分解代谢的初始阶段。甾体核3β-羟基氧化机制的研究,对于建立微生物生产有价值的3β-羟基-5-甾体的方法具有重要意义。采用同源重组和双选择相结合的方法,构建了具有3β-羟基类固醇脱氢酶活性基因缺失的耻垢分枝杆菌突变株(MSMEG_1604、MSMEG_5228和MSMEG_5233)。由此产生的突变体保留了大形态特性和转化胆固醇的能力。在甾醇分解代谢中间体中发现了3-酮-4-甾体。实验获得的数据表明,存在一种以前未检测到的细胞内酶,该酶具有3β-羟基类固醇脱氢酶/Δ5(6)→Δ4(5)异构酶的功能。
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Creation and Characterization of Mycolicibacterium Smegmatis mc2155 with Deletions in Genes Encoding Sterol Oxidation Enzymes
The fast-growing saprotrophic strain Mycolicibacterium smegmatis mc2155 is capable of utilizing plant and animal sterols and can be used for creation of genetically engineered strains producing biologically active steroids. Oxidation of the 3β-hydroxyl group and Δ5(6)→Δ4(5) double bond isomerization followed by formation of stenones from sterols are considered as the initial stage of steroid catabolism in some actinobacteria. The study of the mechanism of steroid nucleus 3β-hydroxyl group oxidation is relevant for the creation of a method of the microbiological production of valuable 3β-hydroxy-5-en-steroids. A mutant strain of M. smegmatis with deletions in three genes (MSMEG_1604, MSMEG_5228 and MSMEG_5233) encoding known enzymes exhibiting 3β-hydroxysteroid dehydrogenase activity was constructed by homologous recombination coupled with double selection. The resulting mutant retained macromorphological properties and the ability to convert cholesterol. 3-Keto-4-en-steroids were found among the sterol catabolism intermediates. Experimentally obtained data indicate the presence of a previously undetected intracellular enzyme that performs the function of 3β-hydroxysteroid dehydrogenase/Δ5(6)→Δ4(5) isomerase.
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