首页> 外文OA文献 >A copper-induced quinone degradation pathway provides protection against combined copper/quinone stress in Lactococcus lactis IL1403.
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A copper-induced quinone degradation pathway provides protection against combined copper/quinone stress in Lactococcus lactis IL1403.

机译:铜诱导的醌降解途径为乳酸乳球菌IL1403中的铜/醌组合应力提供了保护。

摘要

Quinones are ubiquitous in the environment. They occur naturally but are also in widespread use in human and industrial activities. Quinones alone are relatively benign to bacteria, but in combination with copper, they become toxic by a mechanism that leads to intracellular thiol depletion. Here, it was shown that the yahCD-yaiAB operon of Lactococcus lactis IL1403 provides resistance to combined copper/quinone stress. The operon is under the control of CopR, which also regulates expression of the copRZA copper resistance operon as well as other L. lactis genes. Expression of the yahCD-yaiAB operon is induced by copper but not by quinones. Two of the proteins encoded by the operon appear to play key roles in alleviating quinone/copper stress: YaiB is a flavoprotein that converts p-benzoquinones to less toxic hydroquinones, using reduced nicotinamide adenine dinucleotide phosphate (NADPH) as reductant; YaiA is a hydroquinone dioxygenase that converts hydroquinone putatively to 4-hydroxymuconic semialdehyde in an oxygen-consuming reaction. Hydroquinone and methylhydroquinone are both substrates of YaiA. Deletion of yaiB causes increased sensitivity of L. lactis to quinones and complete growth arrest under combined quinone and copper stress. Copper induction of the yahCD-yaiAB operon offers protection to copper/quinone toxicity and could provide a growth advantage to L. lactis in some environments.
机译:醌在环境中无处不在。它们自然存在,但也广泛用于人类和工业活动。单独的醌对细菌是相对良性的,但是与铜结合使用时,它们会通过导致细胞内硫醇消耗的机制而变得有毒。在此,表明乳酸乳球菌IL1403的yahCD-yaiAB操纵子提供了对铜/醌组合应力的抵抗力。操纵子在CopR的控制下,后者还调节copRZA铜抗性操纵子以及其他乳酸乳球菌基因的表达。 yahCD-yaiAB操纵子的表达是由铜而不是由醌诱导的。操纵子编码的两种蛋白质似乎在缓解醌/铜胁迫中起关键作用:YaiB是一种黄素蛋白,它使用还原的烟酰胺腺嘌呤二核苷酸磷酸(NADPH)作为还原剂,将对苯醌转化为毒性较小的氢醌。 YaiA是一种氢醌双加氧酶,可以在耗氧反应中将氢醌推定为4-羟基粘康半醛。对苯二酚和甲基对苯二酚都是YaiA的底物。删除yaiB会导致乳酸乳球菌对醌的敏感性增强,并在组合的醌和铜胁迫下完全停止生长。 yahCD-yaiAB操纵子的铜诱导为铜/醌毒性提供了保护,并且在某些环境下可以为乳酸乳球菌提供生长优势。

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