Transport‐controlled growth decoupling for self‐induced protein expression with a glycerol‐repressible genetic circuit
暂无分享,去创建一个
Alvaro R. Lara | F. Delvigne | Hilal Taymaz-Nikerel | G. Gosset | J. Sigala | Vincent Vandenbroucke | Flavio Kunert | Luz María Martínez | Jochen Büchs
[1] Alvaro R. Lara,et al. Model-Based Characterization of E. coli Strains with Impaired Glucose Uptake , 2023, Bioengineering.
[2] F. Delvigne,et al. Fitness cost associated with cell phenotypic switching drives population diversification dynamics and controllability , 2023, bioRxiv.
[3] Alvaro R. Lara,et al. Glucose consumption rate-dependent transcriptome profiling of Escherichia coli provides insight on performance as microbial factories , 2022, Microbial Cell Factories.
[4] Alvaro R. Lara,et al. Glucose transport engineering allows mimicking fed-batch performance in batch mode and selection of superior producer strains , 2022, Microbial Cell Factories.
[5] D. Kohlheyer,et al. Assessing the growth kinetics and stoichiometry of Escherichia coli at the single‐cell level , 2022, Engineering in life sciences.
[6] Alvaro R. Lara,et al. Vitreoscilla Haemoglobin: A Tool to Reduce Overflow Metabolism , 2021, Microorganisms.
[7] A. Jõers,et al. Decoupling Growth and Production by Removing the Origin of Replication from a Bacterial Chromosome , 2021, bioRxiv.
[8] Huifang Zheng,et al. Intelligent self‐control of carbon metabolic flux in SecY‐engineered Escherichia coli for xylitol biosynthesis from xylose‐glucose mixtures , 2021, Biotechnology and bioengineering.
[9] M. Fussenegger,et al. Control of gene expression in engineered mammalian cells with a programmable shear‐stress inducer , 2021, Biotechnology and bioengineering.
[10] M. Fussenegger,et al. Gene switch for l‐glucose‐induced biopharmaceutical production in mammalian cells , 2021, Biotechnology and bioengineering.
[11] K. Prather,et al. Carbon catabolite repression relaxation in Escherichia coli: global and sugar-specific methods for glucose and secondary sugar co-utilization , 2020 .
[12] Eirik Adim Moreb,et al. Scalable, two-stage, autoinduction of recombinant protein expression in E. coli utilizing phosphate depletion. , 2020, Biotechnology and bioengineering.
[13] G. Striedner,et al. Bacteriophage inspired growth-decoupled recombinant protein production in Escherichia coli. , 2020, ACS synthetic biology.
[14] T. Hwa,et al. Regulation underlying hierarchical and simultaneous utilization of carbon substrates by flux sensors in Escherichia coli , 2019, Nature Microbiology.
[15] F. Delvigne,et al. Segregostat: a novel concept to control phenotypic diversification dynamics on the example of Gram‐negative bacteria , 2019, bioRxiv.
[16] Alvaro R. Lara,et al. Evaluation of microbial globin promoters for oxygen-limited processes using Escherichia coli , 2017, Journal of biological engineering.
[17] Keith E. J. Tyo,et al. A Glucose-Sensing Toggle Switch for Autonomous, High Productivity Genetic Control. , 2017, ACS synthetic biology.
[18] Alvaro R. Lara,et al. Characterization of Endogenous and Reduced Promoters for Oxygen-Limited Processes Using Escherichia coli. , 2017, ACS synthetic biology.
[19] J. Büchs,et al. Quasi-continuous parallel online scattered light, fluorescence and dissolved oxygen tension measurement combined with monitoring of the oxygen transfer rate in each well of a shaken microtiter plate , 2016, Microbial Cell Factories.
[20] J. Büchs,et al. Respiration activity monitoring system for any individual well of a 48-well microtiter plate , 2016, Journal of biological engineering.
[21] M. Chang,et al. A Two-Layer Gene Circuit for Decoupling Cell Growth from Metabolite Production. , 2016, Cell systems.
[22] K. Shimizu,et al. Elucidation of the co-metabolism of glycerol and glucose in Escherichia coli by genetic engineering, transcription profiling, and 13C metabolic flux analysis , 2016, Biotechnology for Biofuels.
[23] J. Büchs,et al. Parallel use of shake flask and microtiter plate online measuring devices (RAMOS and BioLector) reduces the number of experiments in laboratory-scale stirred tank bioreactors , 2015, Journal of biological engineering.
[24] T. Hwa,et al. Coordination of bacterial proteome with metabolism by cyclic AMP signalling , 2013, Nature.
[25] Alfredo Martínez,et al. Modification of glucose import capacity in Escherichia coli: physiologic consequences and utility for improving DNA vaccine production , 2013, Microbial Cell Factories.
[26] Alvaro R. Lara,et al. Engineering Escherichia coli to increase plasmid DNA production in high cell-density cultivations in batch mode , 2012, Microbial Cell Factories.
[27] Francisco Bolivar,et al. New insights into Escherichia coli metabolism: carbon scavenging, acetate metabolism and carbon recycling responses during growth on glycerol , 2012, Microbial Cell Factories.
[28] Adam M. Feist,et al. A comprehensive genome-scale reconstruction of Escherichia coli metabolism—2011 , 2011, Molecular systems biology.
[29] U. Rinas,et al. Simple defined autoinduction medium for high-level recombinant protein production using T7-based Escherichia coli expression systems , 2011, Applied Microbiology and Biotechnology.
[30] Aixia Zhang,et al. Small Stress Response Proteins in Escherichia coli: Proteins Missed by Classical Proteomic Studies , 2009, Journal of bacteriology.
[31] R. Gonzalez,et al. A new model for the anaerobic fermentation of glycerol in enteric bacteria: trunk and auxiliary pathways in Escherichia coli. , 2008, Metabolic engineering.
[32] Francisco Bolívar,et al. Utility of an Escherichia coli strain engineered in the substrate uptake system for improved culture performance at high glucose and cell concentrations: An alternative to fed‐batch cultures , 2008, Biotechnology and bioengineering.
[33] Guillermo Gosset,et al. Coutilization of glucose and glycerol enhances the production of aromatic compounds in an Escherichia coli strain lacking the phosphoenolpyruvate: carbohydrate phosphotransferase system , 2008, Microbial cell factories.
[34] M. Fussenegger,et al. A gas‐inducible expression system in HEK.EBNA cells applied to controlled proliferation studies by expression of p27Kip1 , 2007, Biotechnology and bioengineering.
[35] Ronan M. T. Fleming,et al. Quantitative prediction of cellular metabolism with constraint-based models: the COBRA Toolbox v2.0 , 2007, Nature Protocols.
[36] F. Studier,et al. Protein production by auto-induction in high density shaking cultures. , 2005, Protein expression and purification.
[37] J. Büchs,et al. Online respiration activity measurement (OTR, CTR, RQ) in shake flasks , 2004 .
[38] J. Büchs,et al. Device for sterile online measurement of the oxygen transfer rate in shaking flasks. , 2001, Biochemical engineering journal.
[39] J. Collins,et al. Construction of a genetic toggle switch in Escherichia coli , 2000, Nature.
[40] E. C. Lin,et al. Glycerol dissimilation and its regulation in bacteria. , 1976, Annual review of microbiology.