RIKEN, 2-1 Hirosawa, Wako-shi, Saitama 351-0198, Japan.
J Steroid Biochem Mol Biol. 2010 Oct;122(4):253-63. doi: 10.1016/j.jsbmb.2010.06.002. Epub 2010 Jun 8.
In previous studies, we identified two major Comamonas testosteroni TA441 gene clusters involved in steroid degradation. Because most of the genes included in these clusters were revealed to be involved in degradation of basic steroidal structures and a few were suggested to be involved in the degradation of modified steroid compounds, we investigated the spectrum of steroid compounds degradable for TA441 to better identify the genes involved in steroid degradation. TA441 degraded testosterone, progesterone, epiandrosterone, dehydroepiandrosterone, cholic acid, deoxycholic acid, chenodeoxycholic acid, and lithocholic acid. The results suggested TA441 having 3α-dehydrogenase and Δ4(5)-isomerase, and 3β-,17β-dehydrogenase gene, we isolated these genes, all of which had high homology to the corresponding genes of C. testosteroni ATCC11996. Results of gene-disruption experiments indicated that 3β,17β-dehydrogenase is a unique 3β-dehydrogenase which also acts as a 17β-dehydrogenase in TA441, and there will be at least one more enzyme with 17β-dehydrogenating activity. The 3α-dehydrogenase and Δ4(5)-isomerase genes were found adjacent in the DNA region between the two main steroid degradation gene clusters together with a number of other genes that may be involved in steroid degradation, suggesting the presence of a steroid degradation gene hot spot over 100 kb in size in TA441.
在以前的研究中,我们确定了两个主要的 Comamonas testosteroni TA441 基因簇,它们参与类固醇的降解。由于这些簇中包含的大多数基因被揭示参与基本甾体结构的降解,并且有几个基因被认为参与修饰甾体化合物的降解,因此我们研究了 TA441 可降解的甾体化合物的范围,以更好地确定参与甾体降解的基因。TA441 可降解睾酮、孕酮、表雄酮、脱氢表雄酮、胆酸、脱氧胆酸、鹅去氧胆酸和石胆酸。结果表明 TA441 具有 3α-脱氢酶和 Δ4(5)-异构酶,以及 3β-、17β-脱氢酶基因,我们分离了这些基因,它们都与 C. testosteroni ATCC11996 的相应基因具有高度同源性。基因敲除实验的结果表明,3β、17β-脱氢酶是一种独特的 3β-脱氢酶,在 TA441 中也具有 17β-脱氢酶的作用,并且至少还有一种具有 17β-脱氢酶活性的酶。3α-脱氢酶和 Δ4(5)-异构酶基因位于两个主要类固醇降解基因簇之间的 DNA 区域中,与许多可能参与类固醇降解的其他基因相邻,这表明 TA441 中存在一个大小超过 100 kb 的类固醇降解基因热点。