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首页> 外文期刊>Journal of Biotechnology >Transcription levels of key metabolic genes are the cause for different glucose utilization pathways in E-coli B (BL21) and E-coli K (JM109)
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Transcription levels of key metabolic genes are the cause for different glucose utilization pathways in E-coli B (BL21) and E-coli K (JM109)

机译:关键代谢基因的转录水平是大肠杆菌B(BL21)和大肠杆菌K(JM109)葡萄糖利用途径不同的原因

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摘要

Acetate accumulation is a common problem observed in aerobic high cell density cultures of Escherichia coli. It has been hypothesized in previous reports that the glyoxylate shunt is active in E. coli BL21, the low acetate producer, and inactive in E. coli JM109, the high acetate producer. This hypothesis was further strengthened by incorporating (13) from uniformly labeled glucose into TCA cycle intermediates. Using northern blot analyses, the current report demonstrates that the reason for the inactivity of the glyoxylate pathway in E. coli JM109 is the no apparent transcription of isocitrate lyase (aceA) and malate synthase (aceB), and transcription of the isocitrate lyase repressor (OR). The reverse is seen in E. coli BL21 where the glyoxylate pathway is active due to constitutive transcription of aceA and aceB and no transcription of the OR. In addition, there is a difference between the two strains in the transcription of the acetyl-CoA synthetase (acs), phosphotransacetylase-acetate kinase (pta-ackA) pathway, and pyruvate oxidase (poxB), pathway. The transcript of acs is higher in E. coli BL21 and lower in the E. coli JM109, while the reverse is true for poxB transcription
机译:乙酸盐积累是在大肠杆菌的有氧高细胞密度培养物中观察到的常见问题。在以前的报道中已经假设乙醛酸分流器在低乙酸盐生产者的大肠杆菌BL21中有活性,而在高乙酸盐生产者的大肠杆菌JM109中无活性。通过将(13)均匀标记的葡萄糖整合到TCA循环中间体中,进一步加强了这一假设。使用Northern印迹分析,当前报告表明,大肠杆菌JM109中乙醛酸途径无活性的原因是异柠檬酸裂合酶(aceA)和苹果酸合酶(aceB)没有明显的转录,以及异柠檬酸裂合酶阻遏物(要么)。在大肠杆菌BL21中看到相反的情况,其中乙醛酸途径因aceA和aceB的组成型转录而活跃,而OR则没有转录。此外,这两种菌株在乙酰辅酶A合成酶(acs),磷酸转乙酰酶-乙酸激酶(pta-ackA)途径和丙酮酸氧化酶(poxB)途径的转录方面存在差异。 acs的转录物在大肠杆菌BL21中较高,在大肠杆菌JM109中较低,而poxB转录则相反

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