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首页> 外文期刊>Journal of Biotechnology >Inactivating FruR global regulator in plasmid-bearing Escherichia coli alters metabolic gene expression and improves growth rate
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Inactivating FruR global regulator in plasmid-bearing Escherichia coli alters metabolic gene expression and improves growth rate

机译:灭活带有质粒的大肠杆菌中的FruR全局调节剂,可改变代谢基因的表达并提高生长速率

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摘要

The introduction of plasmids into Escherichia coli is known to impose a metabolic burden, which diminishes the growth rate. This effect could arise from perturbation of the central metabolic pathways, which supply precursors and energy for macromolecule synthesis. We knocked out a global regulator of central metabolism, FruR (also called Cra), to assess its phenotypic effect in E. coli carrying plasmids. During bioreactor runs, a higher specific growth rate of 0.91h(-1) was observed for the plasmid-bearing fruR knockout (P+ fruR) cells compared to its parental plasmid-bearing wildtype (P+ WT) cells (0.75h(-1)), while both the plasmid-free cells displayed similar growth rates (1.0h(-1), respectively). To investigate gene expression changes possibly related to the growth rate recovery, quantitative reverse transcriptase PCR and 2DE proteomic studies were performed. In P+ fruR cells, expression of enzymes involved in sugar catabolism, glycolysis and transcription/translation processes were upregulated, while those related to gluconeogenesis, tricarboxylic acid cycle and stress response were downregulated. Our findings demonstrate that the inactivation of FruR global regulator in recombinant E. coli alters metabolic gene expression and significantly reduces growth retardation from the burden of maintaining a plasmid. This study represents the first attempt to explore the role of a global regulatory gene on plasmid metabolic burden.
机译:已知将质粒引入大肠杆菌会引起代谢负担,这会降低生长速率。这种作用可能是由中央代谢途径的扰动引起的,后者为大分子合成提供了前体和能量。我们敲除了全球中枢代谢调节剂FruR(也称为Cra),以评估其在携带质粒的大肠杆菌中的表型效应。在生物反应器运行期间,与带有亲代质粒的野生型(P + WT)细胞(0.75h(-1)相比,带有质粒的fruR敲除(P + fruR)细胞的比生长速率更高,为0.91h(-1)。 ),而这两个无质粒细胞均显示出相似的生长速率(分别为1.0h(-1))。为了研究可能与生长速率恢复有关的基因表达变化,进行了定量逆转录酶PCR和2DE蛋白质组学研究。在P + fruR细胞中,参与糖代谢,糖酵解和转录/翻译过程的酶的表达被上调,而与糖异生,三羧酸循环和应激反应相关的酶的表达被下调。我们的发现表明,重组大肠杆菌中FruR全局调节子的失活改变了代谢基因的表达,并显着降低了因维持质粒的负担而导致的生长迟缓。这项研究代表了探索全球调控基因在质粒代谢负担中的作用的首次尝试。

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