Horinouchi Masae, Hayashi Toshiaki, Koshino Hiroyuki, Malon Michal, Hirota Hiroshi, Kudo Toshiaki
RIKEN, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
RIKEN, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
J Steroid Biochem Mol Biol. 2014 Sep;143:306-22. doi: 10.1016/j.jsbmb.2014.04.014. Epub 2014 May 5.
Comamonas testosteroni degrades testosterone into 9,17-dioxo-1,2,3,4,10,19-hexanorandrostan-5-oic acid and 2-hydroxyhexa-2,4-dienoic acid via aromatization of the A-ring. The former compound is suggested to be degraded further by β-oxidation, but the details of the process remain unclear. In this study, we identified 9α-hydroxy-17-oxo-1,2,3,4,10,19-hexanorandrost-6-en-5-oic acid as an intermediate compound in the β-oxidation of this compound. ORF32, located in one of the two main steroid degradation gene clusters, was shown to be indispensable for the conversion of this compound. A homology search indicated that ORF32 encodes a hydratase for the CoA-ester, suggesting that ORF32 encodes a hydratase that adds a water molecule to a double bond at C-6 of the CoA-ester of 9α-hydroxy-17-oxo-1,2,3,4,10,19-hexanorandrost-6-en-5-oic acid. From the culture of an ORF32-disrupted mutant incubated with cholic acid for a short period (around two days, when a considerable number of intermediate compounds were detected by HPLC), 7α,12α-dihydroxy-3-oxochola-1,4-dien-24-oic acid, 7α,12α-dihydroxy-3-oxochol-4-en-24-oic acid, 12α-hydroxy-3-oxochola-4,6-dien-24-oic acid, 7α,12α-dihydroxy-3-oxopregna-1,4-diene-20-carboxylic acid, 12α-hydroxy-3-oxopregna-4,6-diene-20-carboxylic acid, 7α,12α-dihydroxy-3-oxopregn-4-ene-20-carboxylic acid, 12α-hydroxy-3-oxopregna-4,6-diene-20-carboxylic acid, 7α-hydroxy-3-oxopregna-4,17(20)-diene-20-carboxylic acid, and 3-oxopregna-4,6,17(20)-triene-20-carboxylic acid were isolated as intermediate compounds of C-17 side-chain degradation. The presence of these compounds implies that the process of degradation of the C-17 side chain in C. testosteroni will be similar to the process in Pseudomonas. The final two compounds, which have a double bond at the C-17(20) position, are here identified for the first time, to the best of our knowledge, as intermediate compounds in bacterial steroid degradation; their composition suggests that the remaining three carbons at the C-17 position would be removed oxidatively as a propionic acid derivative.
睾丸酮丛毛单胞菌通过A环的芳构化作用将睾酮降解为9,17 - 二氧代 - 1,2,3,4,10,19 - 六降雄甾烷 - 5 - 酸和2 - 羟基己 - 2,4 - 二烯酸。前者化合物被认为可通过β - 氧化进一步降解,但该过程的细节仍不清楚。在本研究中,我们鉴定出9α - 羟基 - 17 - 氧代 - 1,2,3,4,10,19 - 六降雄甾 - 6 - 烯 - 5 - 酸是该化合物β - 氧化过程中的一种中间化合物。位于两个主要类固醇降解基因簇之一中的ORF32被证明对于该化合物的转化是不可或缺的。同源性搜索表明ORF32编码一种CoA - 酯水合酶,这表明ORF32编码一种水合酶,该酶将水分子添加到9α - 羟基 - 17 - 氧代 - 1,2,3,4,10,19 - 六降雄甾 - 6 - 烯 - 5 - 酸的CoA - 酯的C - 6位双键上。在与胆酸短时间(约两天,通过高效液相色谱法检测到大量中间化合物时)孵育的ORF32缺失突变体的培养物中,分离出7α,12α - 二羟基 - 3 - 氧代胆 - 1,4 - 二烯 - 24 - 酸、7α,12α - 二羟基 - 3 - 氧代胆 - 4 - 烯 - 24 - 酸、12α - 羟基 - 3 - 氧代胆 - 4,6 - 二烯 - 24 - 酸、7α,12α - 二羟基 - 3 - 氧代孕 - 1,4 - 二烯 - 20 - 羧酸、12α - 羟基 - 3 - 氧代孕 - 4,6 - 二烯 - 20 - 羧酸、7α,12α - 二羟基 - 3 - 氧代孕 - 4 - 烯 - 20 - 羧酸、12α - 羟基 - 3 - 氧代孕 - 4,6 - 二烯 - 20 - 羧酸、7α - 羟基 - 3 - 氧代孕 - 4,17(20) - 二烯 - 20 - 羧酸和三 - 氧代孕 - 4,6,17(20) - 三烯 - 20 - 羧酸作为C - 17侧链降解的中间化合物。这些化合物的存在意味着睾丸酮丛毛单胞菌中C - 17侧链的降解过程将与假单胞菌中的过程相似。据我们所知,最后两种在C - 17(20)位具有双键的化合物首次被鉴定为细菌类固醇降解中的中间化合物;它们的组成表明C - 17位剩余的三个碳原子将作为丙酸衍生物被氧化去除。