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首页> 外文期刊>Applied and Environmental Microbiology >A New Bacterial Steroid Degradation Gene Cluster in Comamonas testosteroni TA441 Which Consists of Aromatic-Compound Degradation Genes for Seco-Steroids and 3-Ketosteroid Dehydrogenase Genes
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A New Bacterial Steroid Degradation Gene Cluster in Comamonas testosteroni TA441 Which Consists of Aromatic-Compound Degradation Genes for Seco-Steroids and 3-Ketosteroid Dehydrogenase Genes

机译:一个新的细菌类固醇降解基因簇中的鸡毛单胞菌TA441,其由固醇类固醇和3-酮类固醇脱氢酶基因的芳香族化合物降解基因组成

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In Comamonas testosteroni TA441, testosterone is degraded via aromatization of the A ring, which is cleaved by the meta-cleavage enzyme TesB, and further degraded by TesD, the hydrolase for the product of TesB. TesEFG, encoded downstream of TesD, are probably hydratase, aldolase, and dehydrogenase for degradation of 2-oxohex-4-enoicacid, one of the products of TesD. Here we present a new and unique steroid degradation gene cluster in TA441, which consists of ORF18, ORF17, tesI, tesH, ORF11, ORF12, and tesDEFG. TesH and TesI are 3-ketosteroid-Δ1-dehydrogenase and 3-ketosteroid-Δ4(5α)-dehydrogenase, respectively, which work in the early steps of steroid degradation. ORF17 probably encodes the reductase component of 9α-hydroxylase for 1,4-androstadiene-3,17-dione, which is the product of TesH in testosterone degradation. Gene disruption experiments showed that these genes are necessary for steroid degradation and do not have any isozymes in TA441. By Northern blot analysis, these genes were shown to be induced when TA441 was incubated with steroids (testosterone and cholic acid) but not with aromatic compounds [phenol, biphenyl, and 3-(3-hydroxyphenyl)propionic acid], indicating that these genes function exclusively in steroid degradation.
机译:在Comamonas testosteroni TA441中,睾丸激素通过A环的芳构化而降解,A环被间位裂解酶TesB裂解,并进一步被TesD(TesB产品的水解酶)降解。 TesEFG编码在TesD的下游,可能是水合酶,醛缩酶和脱氢酶,用于降解TesD的一种产品2-oxohex-4-enoicacid。在这里,我们介绍了TA441中一个新的且独特的类固醇降解基因簇,该簇由ORF18,ORF17,tesI,tesH,ORF11,ORF12和tesDEFG组成。 TesH和TesI分别是3-酮类固醇-Δ1-脱氢酶和3-酮类固醇-Δ4(5α)-脱氢酶,它们在类固醇降解的早期阶段起作用。 ORF17可能编码1,4-雄甾烯二烯3,17-二酮的9α-羟化酶的还原酶成分,这是TesH在睾丸激素降解中的产物。基因破坏实验表明,这些基因对于类固醇降解是必需的,并且在TA441中没有任何同功酶。通过Northern印迹分析,当将TA441与类固醇(睾丸激素和胆酸)一起孵育,而不与芳香族化合物[苯酚,联苯和3-(3-羟苯基)丙酸]孵育时,表明这些基因被诱导,表明这些基因仅在类固醇降解中起作用。

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