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Inducible l-Alanine Exporter Encoded by the Novel Gene ygaW (alaE) in Escherichia coli ▿

机译:新基因ygaW(alaE)在大肠杆菌中编码的诱导型l-丙氨酸出口子 ▿

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摘要

We previously isolated a mutant hypersensitive to l-alanyl-l-alanine from a non-l-alanine-metabolizing Escherichia coli strain and found that it lacked an inducible l-alanine export system. Consequently, this mutant showed a significant accumulation of intracellular l-alanine and a reduction in the l-alanine export rate compared to the parent strain. When the mutant was used as a host to clone a gene(s) that complements the dipeptide-hypersensitive phenotype, two uncharacterized genes, ygaW and ytfF, and two characterized genes, yddG and yeaS, were identified. Overexpression of each gene in the mutant resulted in a decrease in the intracellular l-alanine level and enhancement of the l-alanine export rate in the presence of the dipeptide, suggesting that their products function as exporters of l-alanine. Since ygaW exhibited the most striking impact on both the intra- and the extracellular l-alanine levels among the four genes identified, we disrupted the ygaW gene in the non-l-alanine-metabolizing strain. The resulting isogenic mutant showed the same intra- and extracellular l-alanine levels as observed in the dipeptide-hypersensitive mutant obtained by chemical mutagenesis. When each gene was overexpressed in the wild-type strain, which does not intrinsically excrete alanine, only the ygaW gene conferred on the cells the ability to excrete alanine. In addition, expression of the ygaW gene was induced in the presence of the dipeptide. On the basis of these results, we concluded that YgaW is likely to be the physiologically most relevant exporter for l-alanine in E. coli and proposed that the gene be redesignated alaE for alanine export.
机译:我们以前从一个非l-丙氨酸代谢的大肠杆菌菌株中分离出了一个对l-丙氨酰基-1-丙氨酸高度敏感的突变体,发现它缺乏诱导型l-丙氨酸输出系统。因此,与亲本菌株相比,该突变体显示出细胞内1-丙氨酸的大量积累和1-丙氨酸输出速率的降低。当将该突变体用作宿主来克隆与二肽超敏表型互补的基因时,鉴定了两个未表征的基因ygaW和ytfF以及两个特征化的基因yddG和yeaS。在存在二肽的情况下,突变体中每个基因的过表达导致细胞内1-丙氨酸水平的降低和l-丙氨酸输出速率的增加,表明它们的产物具有l-丙氨酸的输出功能。由于ygaW对所鉴定的四个基因中的细胞内和细胞外l-丙氨酸水平均表现出最显着的影响,因此我们破坏了非l-丙氨酸代谢菌株中的ygaW基因。所得的同基因突变体显示出与通过化学诱变获得的二肽超敏突变体中观察到的相同的细胞内和细胞外1-丙氨酸水平。当在野生型菌株中每个基因都过表达时,该菌株本身并不排泄丙氨酸,只有ygaW基因赋予细胞排泄丙氨酸的能力。另外,在二肽的存在下诱导了ygaW基因的表达。根据这些结果,我们得出结论,YgaW可能是大肠杆菌中L-丙氨酸的生理上最相关的出口者,并建议将该基因重新命名为alaE以用于丙氨酸的出口。

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