Departamento de Bioquímica y Biología Molecular I, Universidad Complutense de Madrid, 28040 Madrid, Spain.
Microbiol Res. 2011 Jul 20;166(5):403-18. doi: 10.1016/j.micres.2010.05.003. Epub 2010 Jul 13.
Cholesterol catabolism has been reported in different bacteria and particularly in several Rhodococcus species, but the genetic of this complex pathway is not yet very well defined. In this work we report the isolation and sequencing of a 9.8 kb DNA fragment of Rhodococcus sp. strain CECT3014, a bacterial strain that we here identify as a Rhodococcus erythropolis strain. In this DNA fragment we found several ORF that are probably involved in steroid catabolism, and choG, a gene encoding a putative cholesterol oxidase whose functional characterization we here report. ChoG protein is a class II cholesterol oxidase with all the structural features of the enzymes of this group. The disruption of the choG gene does not alter the ability of strain CECT3014 cells to grow on cholesterol, but it abolishes the production of extracellular cholesterol oxidase. This later effect is reverted when the mutant cells are transformed with a plasmid expressing choG. We conclude that choG is the gene responsible for the inducible extracellular cholesterol oxidase activity of strain CECT3014. This activity distributes between the cellular membrane and the culture supernatant in a way that suggests it is produced by the same ChoG protein that occurs in two different locations. RT-PCR transcript analysis showed a dual scheme of choG expression: a low constitutive independent transcription, plus a cholesterol induced transcription of choG into a polycistronic kstD-hsd4B-choG mRNA.
胆固醇的分解代谢已在不同的细菌中被报道,特别是在一些罗霍氏菌属的物种中,但这个复杂途径的遗传学尚未得到很好的定义。在这项工作中,我们报道了一株罗霍氏菌属 CECT3014 菌株的 9.8kb DNA 片段的分离和测序,该菌株被鉴定为红球菌属菌株。在这个 DNA 片段中,我们发现了几个可能参与类固醇代谢的 ORF,以及 choG,一个编码假定胆固醇氧化酶的基因,我们在此报告了其功能特征。ChoG 蛋白是一种 II 类胆固醇氧化酶,具有该酶组所有的结构特征。choG 基因的破坏并不改变 CECT3014 细胞在胆固醇上生长的能力,但它消除了细胞外胆固醇氧化酶的产生。当突变细胞被表达 choG 的质粒转化时,这种后期的效果会被逆转。我们得出结论,choG 是 CECT3014 菌株诱导细胞外胆固醇氧化酶活性的基因。这种活性在细胞膜和培养上清液之间分布,表明它是由两种不同位置的相同 ChoG 蛋白产生的。RT-PCR 转录分析显示 choG 表达的双重方案:低组成型独立转录,加上胆固醇诱导的 choG 转录为多顺反子 kstD-hsd4B-choG mRNA。