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FadD19 of Rhodococcus rhodochrous DSM43269, a Steroid-Coenzyme A Ligase Essential for Degradation of C-24 Branched Sterol Side Chains

机译:杜鹃红球菌DSM43269的FadD19,类固醇辅酶A连接酶,对降解C-24支甾醇侧链至关重要

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The actinobacterial cholesterol catabolic gene cluster contains a subset of genes that encode β-oxidation enzymes with a putative role in sterol side chain degradation. We investigated the physiological roles of several genes, i.e., fadD17, fadD19, fadE26, fadE27, and ro04690DSM43269, by gene inactivation studies in mutant strain RG32 of Rhodococcus rhodochrous DSM43269. Mutant strain RG32 is devoid of 3-ketosteroid 9α-hydroxylase (KSH) activity and was constructed following the identification, cloning, and sequential inactivation of five kshA gene homologs in strain DSM43269. We show that mutant strain RG32 is fully blocked in steroid ring degradation but capable of selective sterol side chain degradation. Except for RG32ΔfadD19, none of the mutants constructed in RG32 revealed an aberrant phenotype on sterol side chain degradation compared to parent strain RG32. Deletion of fadD19 in strain RG32 completely blocked side chain degradation of C-24 branched sterols but interestingly not that of cholesterol. The additional inactivation of fadD17 in mutant RG32ΔfadD19 also did not affect cholesterol side chain degradation. Heterologously expressed FadD19DSM43269 nevertheless was active toward steroid-C26-oic acid substrates. Our data identified FadD19 as a steroid-coenzyme A (CoA) ligase with an essential in vivo role in the degradation of the side chains of C-24 branched-chain sterols. This paper reports the identification and characterization of a CoA ligase with an in vivo role in sterol side chain degradation. The high similarity (67%) between the FadD19DSM43269 and FadD19H37Rv enzymes further suggests that FadD19H37Rv has an in vivo role in sterol metabolism of Mycobacterium tuberculosis H37Rv.
机译:放线菌的胆固醇分解代谢基因簇包含编码β-氧化酶的基因的子集,所述β-氧化酶在固醇侧链降解中具有假定作用。我们通过对杜鹃红球菌DSM43269的突变菌株RG32进行基因灭活研究,研究了几个基因(即fadD17,fadD19,fadE26,fadE27和ro04690DSM43269)的生理作用。突变菌株RG32没有3-酮类固醇9α-羟化酶(KSH)活性,并在鉴定,克隆和依次灭活DSM43269菌株中5个kshA基因同源物后构建。我们显示突变株RG32在类固醇环降解中被完全阻断,但能够选择性固醇侧链降解。除RG32ΔfadD19外,与亲本菌株RG32相比,在RG32中构建的突变体均未显示出固醇侧链降解的异常表型。菌株RG32中fadD19的缺失完全阻止了C-24支链固醇的侧链降解,但有趣的是没有胆固醇。突变体RG32ΔfadD19中fadD17的其他失活也不影响胆固醇侧链降解。异源表达的FadD19DSM43269仍对甾体C26酸底物具有活性。我们的数据确定FadD19为类固醇辅酶A(CoA)连接酶,在C-24支链固醇侧链降解中具有重要的体内作用。本文报道了在固醇侧链降解中具有体内作用的CoA连接酶的鉴定和表征。 FadD19DSM43269和FadD19H37Rv酶之间的高度相似性(67%)进一步表明FadD19H37Rv在结核分枝杆菌H37Rv的甾醇代谢中具有体内作用。

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