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肽转运蛋白 CstA 可在大肠杆菌 K-12 中摄取丙酮酸。

Peptide Transporter CstA Imports Pyruvate in Escherichia coli K-12.

机构信息

Department of Biological Sciences and KI for the BioCentury, Korea Advanced Institute of Science and Technology, Daejeon, South Korea.

Intelligent Synthetic Biology Center, Daejeon, South Korea.

出版信息

J Bacteriol. 2018 Mar 12;200(7). doi: 10.1128/JB.00771-17. Print 2018 Apr 1.

Abstract

Pyruvate is an important intermediate of central carbon metabolism and connects a variety of metabolic pathways in Although the intracellular pyruvate concentration is dynamically altered and tightly balanced during cell growth, the pyruvate transport system remains unclear. Here, we identified a pyruvate transporter in using high-throughput transposon sequencing. The transposon mutant library (a total of 5 × 10 mutants) was serially grown with a toxic pyruvate analog (3-fluoropyruvate [3FP]) to enrich for transposon mutants lacking pyruvate transport function. A total of 52 candidates were selected on the basis of a stringent enrichment level of transposon insertion frequency in response to 3FP treatment. Subsequently, their pyruvate transporter function was examined by conventional functional assays, such as those measuring growth inhibition by the toxic pyruvate analog and pyruvate uptake activity. The pyruvate transporter system comprises CstA and YbdD, which are known as a peptide transporter and a conserved protein, respectively, whose functions are associated with carbon starvation conditions. In addition to the presence of more than one endogenous pyruvate importer, it has been suggested that the genome encodes constitutive and inducible pyruvate transporters. Our results demonstrated that CstA and YbdD comprise the constitutive pyruvate transporter system in , which is consistent with the tentative genomic locus previously suggested and the functional relationship with the extracellular pyruvate sensing system. The identification of this pyruvate transporter system provides valuable genetic information for understanding the complex process of pyruvate metabolism in Pyruvate is an important metabolite as a central node in bacterial metabolism, and its intracellular levels are tightly regulated to maintain its functional roles in highly interconnected metabolic pathways. However, an understanding of the mechanism of how bacterial cells excrete and transport pyruvate remains elusive. Using high-throughput transposon sequencing followed by pyruvate uptake activity testing of the selected candidate genes, we found that a pyruvate transporter system comprising CstA and YbdD, currently annotated as a peptide transporter and a conserved protein, respectively, constitutively transports pyruvate. The identification of the physiological role of the pyruvate transporter system provides valuable genetic information for understanding the complex pyruvate metabolism in .

摘要

丙酮酸是中心碳代谢的重要中间产物,连接着多种代谢途径。尽管细胞生长过程中细胞内丙酮酸浓度会发生动态变化并保持紧密平衡,但丙酮酸转运系统仍不清楚。在这里,我们使用高通量转座子测序在 中鉴定了一种丙酮酸转运蛋白。转座子突变体文库(共 5×10 个突变体)在有毒的丙酮酸类似物(3-氟丙酮酸[3FP])中连续生长,以富集缺乏丙酮酸转运功能的转座子突变体。根据 3FP 处理时转座子插入频率的严格富集水平,共选择了 52 个候选者。随后,通过传统的功能测定,如测量有毒的丙酮酸类似物对生长的抑制作用和丙酮酸摄取活性,检查它们的丙酮酸转运蛋白功能。丙酮酸转运系统由 CstA 和 YbdD 组成,它们分别是一种肽转运蛋白和一种保守蛋白,其功能与碳饥饿条件有关。除了存在不止一种内源性丙酮酸输入器外,还表明 基因组编码组成型和诱导型丙酮酸转运蛋白。我们的结果表明,CstA 和 YbdD 组成了 的组成型丙酮酸转运系统,这与先前推测的暂定基因组座和与细胞外丙酮酸感应系统的功能关系一致。该丙酮酸转运系统的鉴定为理解 中丙酮酸代谢的复杂过程提供了有价值的遗传信息。丙酮酸作为细菌代谢的中心节点,是一种重要的代谢物,其细胞内水平受到严格调控,以维持其在高度相互关联的代谢途径中的功能作用。然而,细菌细胞如何排泄和运输丙酮酸的机制仍不清楚。我们使用高通量转座子测序,然后对选定候选基因的丙酮酸摄取活性进行测试,发现由 CstA 和 YbdD 组成的丙酮酸转运系统,分别为目前注释为肽转运蛋白和保守蛋白,组成型地转运丙酮酸。鉴定丙酮酸转运系统的生理作用为理解 中复杂的丙酮酸代谢提供了有价值的遗传信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebff/5847655/d57bf331ad80/zjb9990946810001.jpg

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