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Streptomyces griseus

Nocardia rugosa Propionibacterium arabinosum Propionibacteriumfreudenreichii Propionibacterium pentosaceum Propionibacterium peterssoni Propionibacterium shermanii Propionibacterium technicum Propionibacterium vannielli Protaminobacter ruber Pseudomonas denitrificans Bhi bium meliloti Bhodopseudomonas capsulata Bhodopseudomonas spheroides Strigomonas oncopelti Streptomyces aureofaciens Streptomyces griseus Streptomyces olivaceus... [Pg.121]

Streptomyces sp. N731-45 Streptomyces griseus QTSS) 11504, ZIMET 43681... [Pg.167]

Streptomyces griseus Streptomyces hygroscopicus PERM P-1342, Streptomyces albus NRRL 11109... [Pg.167]

James, M.N.G., et al. Structures of product and inhibitor complexes of Streptomyces griseus protease A at 1.8 A resolution. A model for serine protease catalysis. [Pg.220]

Streptomycesgriseus No. 3570 Ca ndicldin Streptomyces griseus Streptomycin Streptomyces halstedii Carbomycin... [Pg.1608]

Streptomycin Streptomyces griseus Gram-negative bacteria Protein synthesis... [Pg.268]

By fermentation with Streptomyces griseus, S. olivaceus, S. aureofaciens. Bacillus megatherium or Propionobacterium freudenreichii. Molasses is used generally as fermentation medium, C0CI2 and 5,6-dimethylbenzimidazole are added. Various adsorption and extraction methods are used for isolation from the fermentation liquors. [Pg.554]

From fermentation solutions of Streptomyces griseus. Reference(s) ... [Pg.1906]

Trower MK, FS Sariaslani, DP O Keefe (1989) Purification and characterization of a soybean flour-induced cytochrome P-450 from Streptomyces griseus. J Bacteriol 171 1781-1787. [Pg.89]

The transformation of benzene, toluene, naphthalene, biphenyl, and benzo[a]pyrene to the corresponding phenols (Trower et al. 1989) by Streptomyces griseus, and of phenanthrene by Streptomyces flavovirens to ( )tran5 -[95, 105 ]-9,10-dihydrodihydroxyphenanthrene with minor amounts of 9-hydroxyphenanthrene (Sutherland et al. 1990). [Pg.115]

ZeinerR, K-H van Pee, F Lingens (1988) Purification and partial characterization of multiple bromoperoxidases from Streptomyces griseus. J Gen Microbiol 134 3141-3149. [Pg.147]

Sariaslani FS, MK Trower, SE Buchloz (1989) Xenobiotic transformations by Streptomyces griseus. Dev Ind Microbiol 30 161-171. [Pg.397]

Sariaslani FS, LR McGee, DW Ovenall (1987) Microbial transformation of precocene II oxidative reactions by Streptomyces griseus. Appl Environ Microbiol 53 1780-1784. [Pg.564]

Colchicine H3CO. Streptomyces griseus ATCC 13968 0 dealkylation [29]... [Pg.106]

Streptomyces flocculus Streptomyces fradiae Streptomyces griseus... [Pg.212]

Scheme 15. Pathways of oxidation of vindoline by Streptomyces griseus, copper oxidases, and peroxidases. Scheme 15. Pathways of oxidation of vindoline by Streptomyces griseus, copper oxidases, and peroxidases.
The precursor to the enamine 58 was identified as iminium intermediate 56 in studies using Streptomyces griseus, copper oxidases (172,173), and peroxidases (78). Although it was impossible to isolate the highly unstable iminium derivative itself, the 16-O-acetyl derivative 57 was stable and isolable. Thus when 16-... [Pg.368]

Eckenrode et al. demonstrated that copper oxidases could oxidize vindoline through the same sequence of intermediates found in the metabolism of the alkaloid by Streptomyces griseus. Laccase from Polyporus anceps, laccase from the lacquer tree, and the mammalian (human serum) equivalent copper oxidase... [Pg.369]


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Effects on Streptomyces griseus

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Streptomyces griseus biological activity

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