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在谷氨酸棒杆菌中,dtsR1和pyc的双缺失诱导高效L-谷氨酸过量生产。

Double deletion of dtsR1 and pyc induce efficient L: -glutamate overproduction in Corynebacterium glutamicum.

作者信息

Yao Wenjuan, Deng Xiaozhao, Zhong Hui, Liu Miao, Zheng Pu, Sun Zhihao, Zhang Yun

机构信息

College of Biological Science and Technology, China Pharmaceutical University, Nanjing, Jiangsu 210009, People's Republic of China.

出版信息

J Ind Microbiol Biotechnol. 2009 Jul;36(7):911-21. doi: 10.1007/s10295-009-0569-0. Epub 2009 May 2.

Abstract

Corynebacterium glutamicum strains are used for the fermentative production of L-glutamate. Five C. glutamicum deletion mutants were isolated by two rounds of selection for homologous recombination and identified by Southern blot analysis. The growth, glucose consumption and glutamate production of the mutants were analyzed and compared with the wild-type ATCC 13032 strain. Double disruption of dtsR1 (encoding a subunit of acetyl-CoA carboxylase complex) and pyc (encoding pyruvate carboxylase) caused efficient overproduction of L-glutamate in C. glutamicum; production was much higher than that of the wild-type strain and DeltadtsR1 strain under glutamate-inducing conditions. In the absence of any inducing conditions, the amount of glutamate produced by the double-deletion strain DeltadtsR1Deltapyc was more than that of the mutant DeltadtsR1. The activity of phosphoenolpyruvate carboxylase (PEPC) was found to be higher in the DeltadtsR1Deltapyc strain than in the DeltadtsR1 strain and the wild-type strain. Therefore, PEPC appears to be an important anaplerotic enzyme for glutamate synthesis in DeltadtsR1 derivatives. Moreover, this conclusion was confirmed by overexpression of ppc and pyc in the two double-deletion strains (DeltadtsR1Deltappc and DeltadtsR1Deltapyc), respectively. Based on the data generated in this investigation, we suggest a new method that will improve glutamate production strains and provide a better understanding of the interaction(s) between the anaplerotic pathway and fatty acid synthesis.

摘要

谷氨酸棒杆菌菌株用于L-谷氨酸的发酵生产。通过两轮同源重组筛选分离出5株谷氨酸棒杆菌缺失突变体,并通过Southern印迹分析进行鉴定。分析了这些突变体的生长、葡萄糖消耗和谷氨酸产生情况,并与野生型ATCC 13032菌株进行了比较。dtsR1(编码乙酰辅酶A羧化酶复合体的一个亚基)和pyc(编码丙酮酸羧化酶)的双缺失导致谷氨酸棒杆菌中L-谷氨酸的高效过量生产;在谷氨酸诱导条件下,产量远高于野生型菌株和DeltadtsR1菌株。在没有任何诱导条件的情况下,双缺失菌株DeltadtsR1Deltapyc产生的谷氨酸量多于突变体DeltadtsR1。发现磷酸烯醇式丙酮酸羧化酶(PEPC)的活性在DeltadtsR1Deltapyc菌株中高于DeltadtsR1菌株和野生型菌株。因此,PEPC似乎是DeltadtsR1衍生物中谷氨酸合成的一种重要的回补酶。此外,分别在两个双缺失菌株(DeltadtsR1Deltappc和DeltadtsR1Deltapyc)中过表达ppc和pyc证实了这一结论。基于本研究产生的数据,我们提出了一种新方法,该方法将改进谷氨酸生产菌株,并能更好地理解回补途径与脂肪酸合成之间的相互作用。

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