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An AMP nucleosidase gene knockout in Escherichia coli elevates intracellular ATP levels and increases cold tolerance

机译:大肠杆菌中的AMP核苷酶基因敲除可提高细胞内ATP水平并提高耐寒性

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摘要

Disparate psychrophiles (e.g. glacier ice worms, bacteria, algae and fungi) elevate steady-state intracellular ATP levels as temperatures decline, which has been interpreted as a compensatory mechanism to offset reductions in molecular motion and Gibb's free energy of ATP hydrolysis. In this study, we sought to manipulate steady-state ATP levels in the mesophilic bacterium, Escherichia coli, to investigate the relationship between cold temperature survivability and elevated intracellular ATP. Based on known energetic pathways and feedback loops, we targeted the AMP nucleotidase (amn) gene, which is thought to encode the primary AMP degradative enzyme in prokaryotes. By knocking out amn in wild-type E. coli DY330 cells using recombineering methodology, we generated a mutant (AMNk) that elevated intracellular ATP levels by more than 30% across its viable temperature range. As temperature was lowered, the relative ATP disparity between AMNk and DY330 cells increased to approximately 66% at 10°C, and was approximately 100% after storage at 0°C for 5–7 days. AMNk cells stored at 0°C for 7 days displayed approximately fivefold higher cell viability than wild-type DY330 cells treated in the same manner.
机译:随着温度的下降,不同的嗜冷菌(例如冰川蠕虫,细菌,藻类和真菌)会升高稳态细胞内ATP水平,这已被解释为补偿机制,可以抵消分子运动的减少和吉布的ATP水解自由能。在这项研究中,我们试图操纵嗜温细菌大肠杆菌中的稳态ATP水平,以研究低温存活率与细胞内ATP升高之间的关系。基于已知的能量途径和反馈回路,我们针对AMP核苷酸酶(amn)基因,该基因被认为编码原核生物中的主要AMP降解酶。通过使用重组方法敲除野生型大肠杆菌DY330细胞中的氨基酸,我们生成了一个突变体(AMNk),在其可行温度范围内,其细胞内ATP水平提高了30%以上。随着温度降低,AMNk和DY330细胞之间的相对ATP差异在10°C时增加到大约66%,在0°C下保存5-7天后大约为100%。在0°C下保存7天的AMNk细胞显示出比以相同方式处理的野生型DY330细胞高大约五倍的细胞活力。

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