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Journal of Bacteriology|November 23, 2006
RamB, the transcriptional regulator of acetate metabolism in Corynebacterium glutamicum, is subject to regulation by RamA and RamBAnnette Cramer, Marc Auchter, Julia Frunzke, et al.FEMS Microbiology Letters|June 15, 2007
Characterization of citrate utilization in Corynebacterium glutamicum by transcriptome and proteome analysisTino Polen, Daniela Schluesener, Ansgar Poetsch, et al.Journal of Biotechnology|January 13, 2006
Emerging Corynebacterium glutamicum systems biologyVolker F Wendisch, Michael Bott, Jörn Kalinowski, et al.Metabolic Engineering|October 18, 2016
Production of 2-methyl-1-butanol and 3-methyl-1-butanol in engineered Corynebacterium glutamicumMichael Vogt, Christian Brüsseler, Jan van Ooyen, et al.Journal of Biotechnology|January 10, 2012
Influence of oxygen limitation, absence of the cytochrome bc(1) complex and low pH on global gene expression in Gluconobacter oxydans 621H using DNA microarray technologyTanja Hanke, Janine Richhardt, Tino Polen, et al.Applied Microbiology and Biotechnology|December 10, 2016
Improved production of adipate with Escherichia coli by reversal of β-oxidationNicolai Kallscheuer, Jochem Gätgens, Marvin Lübcke, et al.Molecular Microbiology|May 1, 2014
Phosphatase activity of the histidine kinases ensures pathway specificity of the ChrSA and HrrSA two-component systems in Corynebacterium glutamicumEva Hentschel, Christina Mack, Cornelia Gätgens, et al.Microbiology Spectrum|September 12, 2022
Physiological, Biochemical, and Structural Bioinformatic Analysis of the Multiple Inositol Dehydrogenases from Corynebacterium glutamicumPaul Ramp, Christopher Pfleger, Jonas Dittrich, et al.Applied Microbiology and Biotechnology|August 2, 2012
Reductive whole-cell biotransformation with Corynebacterium glutamicum: improvement of NADPH generation from glucose by a cyclized pentose phosphate pathway using pfkA and gapA deletion mutantsSolvej Siedler, Steffen N Lindner, Stephanie Bringer, et al.Microbial Biotechnology|August 26, 2021
Metabolic engineering of Pseudomonas putida for production of the natural sweetener 5-ketofructose from fructose or sucrose by periplasmic oxidation with a heterologous fructose dehydrogenaseKaren Wohlers, Astrid Wirtz, Alexander Reiter, et al.Pageof 19