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L-Alanine Exporter AlaE of Escherichia coli Functions as a Safety Valve to Enhance Survival under Feast Conditions

机译:大肠杆菌的L-丙氨酸出口商AlaE充当安全阀可提高盛宴条件下的存活率

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摘要

The intracellular level of amino acids is determined by the balance between their anabolic and catabolic pathways. L-alanine is anabolized by three L-alanine synthesizing enzymes and catabolized by two racemases and D-amino acid dehydrogenase (DadA). In addition, its level is regulated by L-alanine movement across the inner membrane. We identified the novel gene alaE, encoding an L-alanine exporter. To elucidate the physiological function of L-Alanine exporter, AlaE, we determined the susceptibility of alaE-, dadA-, and alaE/dadA-deficient mutants, derived from the wild-type strain MG1655, to L-alanyl-L-alanine (Ala-Ala), which shows toxicity to the L-alanine-nonmetabolizing variant lacking alaE. The dadA-deficient mutant has a similar minimum inhibitory concentration (MIC) (>1.25 mg/mL) to that observed in MG1655. However, alaE- and alaE/dadA-deficient mutants had MICs of 0.04 and 0.0025 mg/mL, respectively. The results suggested that the efficacy of AlaE to relieve stress caused by toxic intracellular accumulation of L-alanine was higher than that of DadA. Consistent with this, the intracellular level of alanine in the alaE-mutant was much higher than that in MG1655 and the dadA-mutant. We, therefore, conclude that AlaE functions as a ‘safety-valve’ to prevent the toxic level accumulation of intracellular L-alanine under a peptide-rich environment, such as within the animal intestine.
机译:氨基酸的细胞内水平取决于它们的同化和分解代谢途径之间的平衡。 L-丙氨酸被三种L-丙氨酸合成酶代谢,并被两种消旋体和D-氨基酸脱氢酶(DadA)分解代谢。此外,它的水平受内膜中L-丙氨酸运动的调节。我们鉴定了编码L-丙氨酸出口者的新基因alaE。为了阐明L-丙氨酸出口者AlaE的生理功能,我们确定了源自野生型菌株MG1655的alaE-,dadA-和alaE / dadA缺陷型突变体对L-丙氨酰-L-丙氨酸的敏感性( Ala-Ala),对缺乏alaE的L-丙氨酸非代谢变体表现出毒性。 dadA缺陷型突变体的最低抑菌浓度(MIC)(> 1.25 mg / mL)与MG1655相似。但是,缺乏alaE / alaE / dadA的突变体的MIC分别为0.04和0.0025 mg / mL。结果表明,AlaE缓解L-丙氨酸有毒细胞内积累引起的应激的功效高于DadA。与此相一致,alaE-突变体中的丙氨酸细胞内水平比MG1655和dadA-突变体中的高得多。因此,我们得出结论,AlaE起到了“安全阀”的作用,可以防止在富含肽的环境(例如动物肠内)中细胞内L-丙氨酸的毒性水平积累。

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