Issue 36, 2017

Control of ATP concentration in Escherichia coli using an ATP-sensing riboswitch for enhanced S-adenosylmethionine production

Abstract

ATP is the limiting precursor for S-adenosylmethionine (SAM) synthesis in Escherichia coli. In contrast to traditional optimization of fermentation processes, the riboswitch-based strategy, which was developed as a novel efficient regulation approach, has been applied for the control of the intracellular ATP concentration in order to promote the production of SAM. In this work, a newly discovered ATP-sensing riboswitch ydaO motif was used to balance the requirement of ATP in SAM biosynthesis. The results show that the RNA element ydaO from Bacillus subtilis could play a role in regulating gene expression in E. coli. The ydaO motif-based regulation strategy, which was induced by ATP, improved the ATP level as well as the titer of SAM. The intracellular SAM titer of the best-performing strain, AYV, produced the highest SAM titer (1.23 mg Lāˆ’1) which was increased by about 55% compared with the control. Overall, the method enabled new insights into the regulation of ATP in E. coli. These results demonstrate a strategy for optimally employing an ATP-sensing riboswitch for the ATP balance of industrial ATP-driven bioprocesses.

Graphical abstract: Control of ATP concentration in Escherichia coli using an ATP-sensing riboswitch for enhanced S-adenosylmethionine production

Article information

Article type
Paper
Submitted
01 Mar 2017
Accepted
16 Apr 2017
First published
24 Apr 2017
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2017,7, 22409-22414

Control of ATP concentration in Escherichia coli using an ATP-sensing riboswitch for enhanced S-adenosylmethionine production

Y. Chen, H. Zhou, M. Wang and T. Tan, RSC Adv., 2017, 7, 22409 DOI: 10.1039/C7RA02538F

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