Synthesis of a citrulline-rich cyanophycin by use of Pseudomonas putida ATCC 4359
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[1] A. Steinbüchel,et al. Dipeptides in nutrition and therapy: cyanophycin-derived dipeptides as natural alternatives and their biotechnological production , 2010, Applied Microbiology and Biotechnology.
[2] J. Sanders,et al. A study on the applicability of L-aspartate α-decarboxylase in the biobased production of nitrogen containing chemicals , 2009 .
[3] A. Steinbüchel,et al. Cyanophycin‐degrading bacteria in digestive tracts of mammals, birds and fish and consequences for possible applications of cyanophycin and its dipeptides in nutrition and therapy , 2009, Journal of applied microbiology.
[4] A. Steinbüchel,et al. Metabolic Engineering of Saccharomyces cerevisiae for Production of Novel Cyanophycins with an Extended Range of Constituent Amino Acids , 2009, Applied and Environmental Microbiology.
[5] O. Herzberg,et al. Inactivation of microbial arginine deiminases by L-canavanine. , 2008, Journal of the American Chemical Society.
[6] Alexander Steinbüchel,et al. Assessment of technological options and economical feasibility for cyanophycin biopolymer and high-value amino acid production , 2007, Applied Microbiology and Biotechnology.
[7] Hans Mooibroek,et al. Bio-refinery as the bio-inspired process to bulk chemicals. , 2007, Macromolecular bioscience.
[8] Alexander Steinbüchel,et al. Optimization of cyanophycin production in recombinant strains of Pseudomonas putida and Ralstonia eutropha employing elementary mode analysis and statistical experimental design , 2006, Biotechnology and bioengineering.
[9] A. Steinbüchel,et al. Engineering the Genotype of Acinetobacter sp. Strain ADP1 To Enhance Biosynthesis of Cyanophycin , 2006, Applied and Environmental Microbiology.
[10] A. Steinbüchel,et al. Application of a KDPG-aldolase gene-dependent addiction system for enhanced production of cyanophycin in Ralstonia eutropha strain H16. , 2006, Metabolic engineering.
[11] O. Herzberg,et al. Crystal Structures Representing the Michaelis Complex and the Thiouronium Reaction Intermediate of Pseudomonas aeruginosa Arginine Deiminase* , 2005, Journal of Biological Chemistry.
[12] A. Steinbüchel,et al. Investigations on the solubility behavior of cyanophycin. Solubility of cyanophycin in solutions of simple inorganic salts. , 2005, Biomacromolecules.
[13] A. Steinbüchel,et al. Identification of the Anabaena sp. strain PCC7120 cyanophycin synthetase as suitable enzyme for production of cyanophycin in gram-negative bacteria like Pseudomonas putida and Ralstonia eutropha. , 2004, Biomacromolecules.
[14] H. Schlegel,et al. Ein Submersverfahren zur Kultur wasserstoffoxydierender Bakterien: Wachstumsphysiologische Untersuchungen , 2004, Archiv für Mikrobiologie.
[15] A. Steinbüchel,et al. Technical-Scale Production of Cyanophycin with Recombinant Strains of Escherichia coli , 2002, Applied and Environmental Microbiology.
[16] W. Lockau,et al. Cyanophycin Synthetase-Like Enzymes of Non-Cyanobacterial Eubacteria: Characterization of the Polymer Produced by a Recombinant Synthetase of Desulfitobacterium hafniense , 2002, Zeitschrift fur Naturforschung. C, Journal of biosciences.
[17] Alexander Steinbüchel,et al. Evaluation of non-cyanobacterial genome sequences for occurrence of genes encoding proteins homologous to cyanophycin synthetase and cloning of an active cyanophycin synthetase from Acinetobacter sp. strain DSM 587 , 2002, Archives of Microbiology.
[18] A. Steinbüchel,et al. Purification of Synechocystis sp. Strain PCC6308 Cyanophycin Synthetase and Its Characterization with Respect to Substrate and Primer Specificity , 2001, Applied and Environmental Microbiology.
[19] A. Steinbüchel,et al. Heterologous expression of cyanophycin synthetase and cyanophycin synthesis in the industrial relevant bacteria Corynebacterium glutamicum and Ralstonia eutropha and in Pseudomonas putida. , 2001, Biomacromolecules.
[20] A. Steinbüchel,et al. Molecular characterization of the cyanophycin synthetase from Synechocystis sp. strain PCC6308 , 2000, Archives of Microbiology.
[21] D. Roop,et al. Four new derivatives of the broad-host-range cloning vector pBBR1MCS, carrying different antibiotic-resistance cassettes. , 1995, Gene.
[22] J. Sambrook,et al. Molecular Cloning: A Laboratory Manual , 2001 .
[23] D. Hanahan. Studies on transformation of Escherichia coli with plasmids. , 1983, Journal of molecular biology.
[24] A. Pühler,et al. A Broad Host Range Mobilization System for In Vivo Genetic Engineering: Transposon Mutagenesis in Gram Negative Bacteria , 1983, Bio/Technology.
[25] B. Friedrich,et al. Naturally occurring genetic transfer of hydrogen-oxidizing ability between strains of Alcaligenes eutrophus , 1981, Journal of bacteriology.
[26] I. Chibata,et al. Enzymatic Production of l-Citrulline by Pseudomonas putida , 1971, Applied microbiology.
[27] U. K. Laemmli,et al. Cleavage of Structural Proteins during the Assembly of the Head of Bacteriophage T4 , 1970, Nature.
[28] G. Gottschalk,et al. [A submersion method for culture of hydrogen-oxidizing bacteria: growth physiological studies]. , 1961, Archiv fur Mikrobiologie.