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首页> 外文期刊>Journal of molecular microbiology and biotechnology: JMMB >Nutrient-Scavenging Stress Response in an Escherichia coli Strain Lacking the Phosphoenolpyruvate:Carbohydrate Phosphotransferase System, as Explored by Gene Expression Profile Analysis
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Nutrient-Scavenging Stress Response in an Escherichia coli Strain Lacking the Phosphoenolpyruvate:Carbohydrate Phosphotransferase System, as Explored by Gene Expression Profile Analysis

机译:基因表达谱分析探讨了缺乏磷酸烯醇丙酮酸:碳水化合物磷酸转移酶系统的大肠杆菌中的营养清除应激反应

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The physiological role of the phosphoenolpyruvate:carbohydrate phosphotransferase system (PTS) has been studied in Escherichia coli. It has been shown that it directly or indirectly regulates the activity of most catabolic genes involved in carbohydrate transport. Accordingly, strains lacking PTS have pleiotropic phenotypes and are impaired in their capacity to grow on glucose and other PTS sugars. We have previously reported the characterization of a mutant harboring a pts operon deletion (PB11) which, as expected, showed a severe reduction of its growth capacity when incubated on glucose as carbon source, as compared to that of the isogenic wild-type strain. These observations corroborate that PTS is the main determinant of the capacity to grow on glucose and confirm the existence of other systems that allow glucose utilization although at a reduced level. To explore the physiological state and the metabolic pathways involved in glucose utilization in a pts- background, we analyzed the global transcriptional response of the PB11 mutant when growing in minimal medium with glucose as carbon source. Genome-wide transcriptional analysis using microarrays revealed that, under this condition, expression of several genes related to carbon transport and metabolism was upregulated, as well as that of genes encoding transporters for certain nucleotides, nitrogen, phosphorus and sulfur sources. In addition, upregulation of rpoS and several genes transcribed by this sigma subunit was detected. These results indicate that the reduced capacity of glucose utilization present in the PB11 strain induces a general nutrient-scavenging response and this behavior is not dependent on a functional PTS. This condition is responsible of the utilization of secondary carbon sources in the presence of glucose.
机译:磷酸烯醇丙酮酸:碳水化合物磷酸转移酶系统(PTS)的生理作用已在大肠杆菌中进行了研究。已经表明,它直接或间接调节参与碳水化合物运输的大多数分解代谢基因的活性。因此,缺乏PTS的菌株具有多效性表型,并且在葡萄糖和其他PTS糖上的生长能力受到损害。先前我们已经报道了具有pts操纵子缺失(PB11)的突变体的表征,正如预期的,与等基因野生型菌株相比,该突变体在葡萄糖作为碳源孵育时显示出其生长能力的严重降低。这些观察结果证实了PTS是葡萄糖生长能力的主要决定因素,并证实了存在其他虽然葡萄糖水平降低但仍能利用葡萄糖的系统。为了探索在pts背景下参与葡萄糖利用的生理状态和代谢途径,我们分析了在以葡萄糖为碳源的基本培养基中生长时PB11突变体的整体转录反应。使用微阵列的全基因组转录分析显示,在这种条件下,与碳转运和代谢相关的几个基因的表达以及编码某些核苷酸,氮,磷和硫源转运蛋白的基因的表达均被上调。此外,还检测到了rpoS的上调和该sigma亚基转录的几个基因。这些结果表明,PB11菌株中葡萄糖利用能力的下降会引起一般的营养清除反应,并且这种行为不依赖于功能性PTS。在葡萄糖存在的情况下,这种情况负责利用次级碳源。

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