Metabolic Engineering of Nocardia sp. CS682 for Enhanced Production of Nargenicin A1
暂无分享,去创建一个
J. Sohng | H. Lee | S. Maharjan | J. Yoo | Dinesh Koju
[1] Y. Igarashi,et al. Identification of Nocobactin NA Biosynthetic Gene Clusters in Nocardia farcinica , 2010, Journal of bacteriology.
[2] J. Ishikawa,et al. Monooxygenation of rifampicin catalyzed by the rox gene product of Nocardia farcinica: structure elucidation, gene identification and role in drug resistance , 2010, The Journal of Antibiotics.
[3] J. Sohng,et al. Metabolic engineering of Streptomyces venezuelae for malonyl-CoA biosynthesis to enhance heterologous production of polyketides , 2010, Biotechnology Letters.
[4] Y. Venkateswarlu,et al. Production of bioactive metabolites by Nocardia levis MK‐VL_113 , 2009, Letters in applied microbiology.
[5] T. S. Kim,et al. Nargenicin enhances 1,25-dihydroxyvitamin D(3)- and all-trans retinoic acid-induced leukemia cell differentiation via PKCbetaI/MAPK pathways. , 2009, Biochemical pharmacology.
[6] J. Sohng,et al. Quantitative analysis of nargenicin in Nocardia sp. CS682 culture by high performance liquid chromatography , 2009, Archives of pharmacal research.
[7] J. Sohng,et al. Production, isolation and biological activity of nargenicin from Nocardia sp. CS682 , 2008, Archives of pharmacal research.
[8] C. Méndez,et al. Improving production of bioactive secondary metabolites in actinomycetes by metabolic engineering. , 2008, Metabolic engineering.
[9] J. Sohng,et al. Heterologous expression of metK1-sp and afsR-sp in Streptomyces venezuelae for the production of pikromycin , 2008, Biotechnology Letters.
[10] J. Suh,et al. Genetic characterization of two S-adenosylmethionine-induced ABC transporters reveals their roles in modulations of secondary metabolism and sporulation in Streptomyces coelicolor M145. , 2007, Journal of microbiology and biotechnology.
[11] Won Seok Jung,et al. Analysis of intracellular short organic acid-coenzyme A esters from actinomycetes using liquid chromatography-electrospray ionization-mass spectrometry. , 2007, Journal of mass spectrometry : JMS.
[12] Y. Uehara,et al. Construction of a pair of practical Nocardia-Escherichia coli shuttle vectors. , 2007, Japanese journal of infectious diseases.
[13] K. Chater,et al. Engineering of Primary Carbohydrate Metabolism for Increased Production of Actinorhodin in Streptomyces coelicolor , 2006, Applied and Environmental Microbiology.
[14] K. Chiba,et al. Contribution of rpoB2 RNA Polymerase β Subunit Gene to Rifampin Resistance in Nocardia Species , 2006, Antimicrobial Agents and Chemotherapy.
[15] R. Wallace,,et al. Clinical and Laboratory Features of the Nocardia spp. Based on Current Molecular Taxonomy , 2006, Clinical Microbiology Reviews.
[16] Zhao Xin-qing,et al. S-adenosylmethionine (SAM) regulates antibiotic biosynthesis in Streptomyces spp. in a mode independent of its role as a methyl donor , 2006 .
[17] A. Lezhava,et al. Enhanced Expression of S-Adenosylmethionine Synthetase Causes Overproduction of Actinorhodin in Streptomyces coelicolor A3(2) , 2003, Journal of bacteriology.
[18] J. Suh,et al. Accumulation of S-Adenosyl-l-Methionine Enhances Production of Actinorhodin but Inhibits Sporulation in Streptomyces lividans TK23 , 2003, Journal of bacteriology.
[19] M. Bibb,et al. Role of an Essential Acyl Coenzyme A Carboxylase in the Primary and Secondary Metabolism of Streptomyces coelicolor A3(2) , 2001, Applied and Environmental Microbiology.
[20] M. Tsuda,et al. Nocarasins A−C and Brasiliquinone D, New Metabolites from the Actinomycete Nocardia brasiliensis , 1999 .
[21] M. Tsuda,et al. Brasiliquinones A-C, new cytotoxic benz [a] anthraquinones with an ethyl group at C-3 from actinomycete Nocardia brasiliensis , 1996 .
[22] B. Beaman,et al. Nocardia species: host-parasite relationships , 1994, Clinical Microbiology Reviews.
[23] David E. Cane,et al. Biosynthetic origin of the carbon skeleton and oxygen atoms of nargenicin A1 , 1984 .
[24] E. Whipple,et al. Structure of natural antibiotic CP-47,444 , 1980 .
[25] C. Chidester,et al. Nodusmicin: The structure of a new antibiotic , 1980 .