A novel genetic tool for metabolic optimization of Corynebacterium glutamicum: efficient and repetitive chromosomal integration of synthetic promoter-driven expression libraries

2017 ◽  
Vol 101 (11) ◽  
pp. 4737-4746 ◽  
Author(s):  
Jing Shen ◽  
Jun Chen ◽  
Peter Ruhdal Jensen ◽  
Christian Solem
2015 ◽  
Vol 176 (7) ◽  
pp. 2065-2075 ◽  
Author(s):  
Young Hoon Oh ◽  
Jae Woo Choi ◽  
Eun Young Kim ◽  
Bong Keun Song ◽  
Ki Jun Jeong ◽  
...  

2018 ◽  
Vol 40 (5) ◽  
pp. 819-827 ◽  
Author(s):  
Shuanghong Zhang ◽  
Dingyu Liu ◽  
Zhitao Mao ◽  
Yufeng Mao ◽  
Hongwu Ma ◽  
...  

2021 ◽  
pp. 125782
Author(s):  
Cheng Li ◽  
Charles A. Swofford ◽  
Christian Rückert ◽  
Alkiviadis Orfefs Chatzivasileiou ◽  
Rui wen Ou ◽  
...  

2014 ◽  
Vol 98 (6) ◽  
pp. 2617-2623 ◽  
Author(s):  
Jakob Vang Rytter ◽  
Søren Helmark ◽  
Jun Chen ◽  
Mateusz Jakub Lezyk ◽  
Christian Solem ◽  
...  

2019 ◽  
Vol 476 (21) ◽  
pp. 3141-3159 ◽  
Author(s):  
Meiru Si ◽  
Can Chen ◽  
Zengfan Wei ◽  
Zhijin Gong ◽  
GuiZhi Li ◽  
...  

Abstract MarR (multiple antibiotic resistance regulator) proteins are a family of transcriptional regulators that is prevalent in Corynebacterium glutamicum. Understanding the physiological and biochemical function of MarR homologs in C. glutamicum has focused on cysteine oxidation-based redox-sensing and substrate metabolism-involving regulators. In this study, we characterized the stress-related ligand-binding functions of the C. glutamicum MarR-type regulator CarR (C. glutamicum antibiotic-responding regulator). We demonstrate that CarR negatively regulates the expression of the carR (ncgl2886)–uspA (ncgl2887) operon and the adjacent, oppositely oriented gene ncgl2885, encoding the hypothetical deacylase DecE. We also show that CarR directly activates transcription of the ncgl2882–ncgl2884 operon, encoding the peptidoglycan synthesis operon (PSO) located upstream of carR in the opposite orientation. The addition of stress-associated ligands such as penicillin and streptomycin induced carR, uspA, decE, and PSO expression in vivo, as well as attenuated binding of CarR to operator DNA in vitro. Importantly, stress response-induced up-regulation of carR, uspA, and PSO gene expression correlated with cell resistance to β-lactam antibiotics and aromatic compounds. Six highly conserved residues in CarR were found to strongly influence its ligand binding and transcriptional regulatory properties. Collectively, the results indicate that the ligand binding of CarR induces its dissociation from the carR–uspA promoter to derepress carR and uspA transcription. Ligand-free CarR also activates PSO expression, which in turn contributes to C. glutamicum stress resistance. The outcomes indicate that the stress response mechanism of CarR in C. glutamicum occurs via ligand-induced conformational changes to the protein, not via cysteine oxidation-based thiol modifications.


2017 ◽  
Vol 43 (6) ◽  
pp. 789
Author(s):  
Rui WANG ◽  
Meng-Lin ZHU ◽  
Fang-Yuan GAO ◽  
Juan-Sheng REN ◽  
Xian-Jun LU ◽  
...  

2019 ◽  
Vol 35 (6) ◽  
pp. 21-29
Author(s):  
T.E. Leonova ◽  
T.E. Shustikova ◽  
T.V. Gerasimova ◽  
Т.А. Ivankova ◽  
K.V. Sidorenko Sidorenko ◽  
...  

Thepsefdh_D221Q gene coding for a mutant formate dehydrogenase (PseFDG_D221Q) from Pseudomonas, which catalyzes the formate oxidation with the simultaneous formation of NADPH, has been expressed in the cells of lysine-producing Corynebacterium glutamicum strains. The psefdh_D221Q gene was introduced into С. glutamicum strains as part of an autonomous plasmid or was integrated into the chromosome with simultaneous inactivation of host formate dehydrogenase genes. It was shown that the С. glutamicum strains with NADP+ -dependent formate dehydrogenase have an increased level of L-lysine synthesis in the presence of formate, if their own formate dehydrogenase is inactivated. L-lysine, formate dehydrogenase, NADPH, Corynebacterium glutamicum The work was carried out using the equipment of the Multipurpose Scientific This work was carried out on the equipment of the Multipurpose Scientific Installation of «All-Russian Collection of Industrial Microorganisms», National Bio-Resource Center, NRC «Kurchatov Institute»- GosNIIgenetika. This work was financially supported by the Ministry of Education and Science of Russia (Unique Project Identifier - RFMEFI61017X0011).


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