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首页> 外文期刊>Tuberculosis >Mycobacterium tuberculosis cysteine biosynthesis genes mec plus -cysO-cysM confer resistance to clofazimine
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Mycobacterium tuberculosis cysteine biosynthesis genes mec plus -cysO-cysM confer resistance to clofazimine

机译:结核分枝杆菌半胱氨酸生物合成基因MEC加 - 环-CYSM赋予氯氟氮耐药性

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摘要

The Mycobacterium tuberculosis mec+-cysO-cysM gene cluster was shown to be part of a novel cysteine biosynthesis pathway in vitro, but little is known about its essentiality or role in M. tuberculosis physiology. In this study, we generate a knock out of the mec+-cysO-cysM gene cluster in M. tuberculosis and show that the gene cluster is not essential under a variety of conditions, suggesting redundancy in pathways for cysteine biosynthesis in M. tuberculosis. The cysteine biosynthesis gene cluster is essential for resistance for clofazimine, a peroxide-producing anti-leprosy drug. Therefore, although under most conditions the pathway is not essential, it likely has an important role in defense against oxidative stress in M. tuberculosis.
机译:结核分枝杆菌MEC + -CYSO-CYSM基因簇被证明是在体外的新型半胱氨酸生物合成途径的一部分,但对其在肺结核生理学中的基本或作用很少。 在这项研究中,我们在核心结核病中产生了爆震的MEC + -CYSO-CYSM基因簇,并表明基因群在各种条件下不是必需的,这表明在M.结核病中的半胱氨酸生物合成途径冗余。 半胱氨酸生物合成基因簇对于氯氟氮抗性,一种产生过氧化物的抗麻醉药物是必不可少的。 因此,虽然在大多数条件下,途径不是必需的,但它可能在对肺结核中的氧化应激免受防御的重要作用。

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