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All three quinone species play distinct roles in ensuring optimal growth under aerobic and fermentative conditions in E. coli K12

机译:所有三种醌类在确保大肠杆菌K12有氧和发酵条件下的最佳生长中发挥着独特的作用

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摘要

The electron transport chain of E. coli contains three different quinone species, ubiquinone (UQ), menaquinone (MK) and demethylmenaquinone (DMK). The content and ratio of the different quinone species vary depending on the external conditions. To study the function of the different quinone species in more detail, strains with deletions preventing UQ synthesis, as well as MK and/or DMK synthesis were cultured under aerobic and anaerobic conditions. The strains were characterized with respect to growth and product synthesis. As quinones are also involved in the control of ArcB/A activity, we analyzed the phosphorylation state of the response regulator as well as the expression of selected genes.The data show reduced aerobic growth coupled to lactate production in the mutants defective in ubiquinone synthesis. This confirms the current assumption that ubiquinone is the main quinone under aerobic growth conditions. In the UQ mutant strains the amount of MK and DMK is significantly elevated. The strain synthesizing only DMK is less affected in growth than the strain synthesizing MK as well as DMK. An inhibitory effect of MK on aerobic growth due to increased oxidative stress is postulated.Under fermentative growth conditions the mutant synthesizing only UQ is severely impaired in growth. Obviously, UQ is not able to replace MK and DMK during anaerobic growth.Mutations affecting quinone synthesis have an impact on ArcA phosphorylation only under anaerobic conditions. ArcA phosphorylation is reduced in strains synthesizing only MK or MK plus DMK.
机译:大肠杆菌的电子传输链包含三种不同的醌类,泛醌(UQ),甲萘醌(MK)和去甲基甲萘醌(DMK)。不同醌种类的含量和比例根据外部条件而变化。为了更详细地研究不同醌种类的功能,在有氧和无氧条件下培养了具有缺失防止UQ合成以及MK和/或DMK合成的缺失的菌株。针对菌株的生长和产物合成对其进行表征。由于醌也参与控制ArcB / A活性,因此我们分析了响应调节剂的磷酸化状态以及所选基因的表达。数据表明,在泛醌合成缺陷的突变体中,有氧生长减少与乳酸产生相关。这证实了目前的假设,即有氧生长条件下泛醌是主要醌。在UQ突变株中,MK和DMK的量显着增加。仅合成DMK的菌株比合成MK以及DMK的菌株对生长的影响较小。推测由于氧化应激增加,MK对有氧生长的抑制作用。在发酵生长条件下,仅合成UQ的突变体的生长受到严重损害。显然,UQ在厌氧生长过程中不能替代MK和DMK,影响醌合成的突变仅在厌氧条件下才会影响ArcA磷酸化。仅合成MK或MK加DMK的菌株会降低ArcA磷酸化。

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  • 年(卷),期 -1(13),4
  • 年度 -1
  • 页码 e0194699
  • 总页数 18
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