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Functional Redundancy of Steroid C26-monooxygenase Activity in Mycobacterium tuberculosis Revealed by Biochemical and Genetic Analyses*

机译:生化和遗传分析揭示了结核分枝杆菌中类固醇C26-单加氧酶活性的功能冗余*

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摘要

One challenge to the development of new antitubercular drugs is the existence of multiple virulent strains that differ genetically. We and others have recently demonstrated that CYP125A1 is a steroid C26-monooxygenase that plays a key role in cholesterol catabolism in Mycobacterium tuberculosis CDC1551 but, unexpectedly, not in the M. tuberculosis H37Rv strain. This discrepancy suggests that the H37Rv strain possesses compensatory activities. Here, we examined the roles in cholesterol metabolism of two other cytochrome P450 enzymes, CYP124A1 and CYP142A1. In vitro analysis, including comparisons of the binding affinities and catalytic efficiencies, demonstrated that CYP142A1, but not CYP124A1, can support the growth of H37Rv cells on cholesterol in the absence of cyp125A1. All three enzymes can oxidize the sterol side chain to the carboxylic acid state by sequential oxidation to the alcohol, aldehyde, and acid. Interestingly, CYP125A1 generates oxidized sterols of the (25S)-26-hydroxy configuration, whereas the opposite 25R stereochemistry is obtained with CYP124A1 and CYP142A1. Western blot analysis indicated that CYP124A1 was not detectably expressed in either the H37Rv or CDC1551 strains, whereas CYP142A1 was found in H37Rv but not CDC1551. Genetic complementation of CDC1551 Δcyp125A1 cells with the cyp124A1 or cyp142A1 genes revealed that the latter can fully rescue the growth defect on cholesterol, whereas cells overexpressing CYP124A1 grow poorly and accumulate cholest-4-en-3-one. Our data clearly establish a functional redundancy in the essential C26-monooxygenase activity of M. tuberculosis and validate CYP125A1 and CYP142A1 as possible drug targets.
机译:开发新的抗结核药物的挑战之一是存在多种遗传上不同的毒力菌株。我们和其他人最近证明,CYP125A1是类固醇C26单加氧酶,在结核分枝杆菌CDC1551中的胆固醇分解代谢中起关键作用,但出乎意料的是,在结核分枝杆菌H37Rv株中不起作用。这种差异表明H37Rv株具有补偿活性。在这里,我们检查了另外两种细胞色素P450酶CYP124A1和CYP142A1在胆固醇代谢中的作用。体外分析(包括结合亲和力和催化效率的比较)表明,在没有cyp125A1的情况下,CYP142A1而非CYP124A1可以支持H37Rv细胞在胆固醇上的生长。通过依次氧化为醇,醛和酸,所有这三种酶均可将固醇侧链氧化为羧酸状态。有趣的是,CYP125A1生成(25S)-26-羟基构型的氧化固醇,而用CYP124A1和CYP142A1获得相反的25R立体化学。 Western印迹分析表明,CYP124A1在H37Rv或CDC1551菌株中均未检测到表达,而CYP142A1在H37Rv中却未在CDC1551中发现。 cyp124A1或cyp142A1基因对CDC1551Δcyp125A1细胞的遗传互补显示,后者可以完全挽救胆固醇的生长缺陷,而过表达CYP124A1的细胞生长较差,并积累cholest-4-en-3-one。我们的数据清楚地证明了结核分枝杆菌的基本C26-单加氧酶活性具有功能冗余性,并将CYP125A1和CYP142A1验证为可能的药物靶标。

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