Development of Genetically Stable Escherichia coli Strains for Poly(3-Hydroxypropionate) Production
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Yamei Ding | Guang Zhao | Chao Sun | Mo Xian | M. Xian | Chao Sun | Yamei Ding | Guang Zhao | Changshui Liu | Rubing Zhang | Yongqiang Gao | Rubing Zhang | Changshui Liu | Yongqiang Gao
[1] J. Morrison,et al. Chorismate mutase-prephenate dehydrogenase from Escherichia coli. Purification and properties of the bifunctional enzyme. , 1982, Biochimica et biophysica acta.
[2] Guang Zhao,et al. Biosynthesis of poly(3-hydroxypropionate) from glycerol by recombinant Escherichia coli. , 2013, Bioresource technology.
[3] G. Bennett,et al. A method for construction of E. coli strains with multiple DNA insertions in the chromosome. , 1997, Gene.
[4] D. Zabriskie,et al. Factors influencing productivity of fermentations employing recombinant microorganisms , 1986 .
[5] K. Shanmugam,et al. Genetic improvement of Escherichia coli for ethanol production: chromosomal integration of Zymomonas mobilis genes encoding pyruvate decarboxylase and alcohol dehydrogenase II , 1991, Applied and environmental microbiology.
[6] Vlad I. Morariu,et al. Expression , 2015, Principles of Molecular Virology.
[7] J. Keasling,et al. Construction and characterization of F plasmid-based expression vectors. , 1998, Biotechnology and bioengineering.
[8] B. E. Davidson. [52] Chorismate mutase-prephenate dehydratase from Escherichia coli , 1987 .
[9] S. Vollenweider,et al. Purification and structural characterization of 3-hydroxypropionaldehyde and its derivatives. , 2003, Journal of agricultural and food chemistry.
[10] Victor Zhurkin,et al. A mutant spacer sequence between -35 and -10 elements makes the Plac promoter hyperactive and cAMP receptor protein-independent. , 2004, Proceedings of the National Academy of Sciences of the United States of America.
[11] W. Dobrogosz,et al. Chemical characterization of an antimicrobial substance produced by Lactobacillus reuteri , 1989, Antimicrobial Agents and Chemotherapy.
[12] A. Steinbüchel,et al. Plasmid addiction systems: perspectives and applications in biotechnology , 2010, Microbial biotechnology.
[13] Grzegorz Węgrzyn,et al. Effects of the presence of ColE1 plasmid DNA in Escherichia coli on the host cell metabolism , 2006, Microbial Cell Factories.
[14] T. Ohmoto,et al. A convenient method for multiple insertions of desired genes into target loci on the Escherichia coli chromosome , 2011, Applied Microbiology and Biotechnology.
[15] Alexander Steinbüchel,et al. Biosynthesis and Biodegradation of 3-Hydroxypropionate- Containing Polyesters , 2010, Applied and Environmental Microbiology.
[16] Lin-Ping Wu,et al. Production and characterization of poly(3-hydroxypropionate-co-4-hydroxybutyrate) with fully controllable structures by recombinant Escherichia coli containing an engineered pathway. , 2012, Metabolic engineering.
[17] K. Friehs. Plasmid copy number and plasmid stability. , 2004, Advances in biochemical engineering/biotechnology.
[18] J. Mcneil,et al. Prediction of rho-independent transcriptional terminators in Escherichia coli. , 2001, Nucleic acids research.
[19] J. Hoch,et al. Cloning structural gene sacB, which codes for exoenzyme levansucrase of Bacillus subtilis: expression of the gene in Escherichia coli , 1983, Journal of bacteriology.
[20] B. E. Davidson,et al. Chorismate mutase-prephenate dehydratase from Escherichia coli K-12. I. Purification, molecular weight, and amino acid composition. , 1972, The Journal of biological chemistry.
[21] K. Roland,et al. Construction and evaluation of a delta cya delta crp Salmonella typhimurium strain expressing avian pathogenic Escherichia coli O78 LPS as a vaccine to prevent airsacculitis in chickens. , 1999, Avian diseases.
[22] Hailiang Jiang,et al. Screening, determination and confirmation of chloramphenicol in seafood, meat and honey using ELISA, HPLC–UVD, GC–ECD, GC–MS–EI–SIM and GCMS–NCI–SIM methods , 2005 .
[23] A. Steinbüchel,et al. Establishment of a novel anabolism-based addiction system with an artificially introduced mevalonate pathway: complete stabilization of plasmids as universal application in white biotechnology. , 2009, Metabolic engineering.
[24] Guoqiang Chen,et al. Production of 3-hydroxypropionate homopolymer and poly(3-hydroxypropionate-co-4-hydroxybutyrate) copolymer by recombinant Escherichia coli. , 2011, Metabolic engineering.
[25] A. Steinbüchel,et al. Formation of short chain length/medium chain length polyhydroxyalkanoate copolymers by fatty acid beta-oxidation inhibited Ralstonia eutropha. , 2002, Biomacromolecules.
[26] B. E. Davidson,et al. Chorismate mutase-prephenate dehydratase from Escherichia coli K-12. II. Kinetic properties. , 1972, The Journal of biological chemistry.
[27] R. Gross,et al. Pseudomonas oleovorans as a Source of Poly(β-Hydroxyalkanoates) for Potential Applications as Biodegradable Polyesters , 1988, Applied and environmental microbiology.
[28] D. Burns,et al. High-performance liquid chromatographic analysis of ampicillin and cloxacillin and its application to an intramammary veterinary preparation , 1991 .
[29] Y. Inoue,et al. Morphological study of bacterial poly(3-hydroxybutyrate-co-3-hydroxypropionate) , 1996 .
[30] Gerald Striedner,et al. Development of an antibiotic-free plasmid selection system based on glycine auxotrophy for recombinant protein overproduction in Escherichia coli. , 2008, Journal of biotechnology.
[31] D. Schifferli,et al. Improved allelic exchange vectors and their use to analyze 987P fimbria gene expression. , 1998, Gene.