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Pseudonocardia

Thiemer B, JR Andreesen, T Schrader (2003) Cloning and characterization of a gene cluster involved in tetra-hydrofuran degradation in Pseudonocardia sp. strain Kl.Arch Microbiol 179 266-277. [Pg.584]

Vainberg S, K McClay, H Masuda, D Root, C Condee, GJ Zylstra, RJ Steffan (2006) Biodegradation of ether pollutants by Pseudonocardia sp. strain ENV478. Appl Environ Microbiol 72 5218-5224. [Pg.584]

Acrylonitrile produced industrially via propylene ammoxidation contains trace amounts of benzene. When using Pseudonocardia thermophila JCM3095 or Rhodococcus rhodochrous J-1 as microbial NHase catalyst for conversion of acrylonitrile to acrylamide, concentrations of benzene of <4 ppm produced a significant increase in the reaction rate [16]. Maintaining the concentration of HCN and oxazole at <5 ppm and <10 ppm respectively produced high-quality acrylamide suitable for polymerization. [Pg.170]

Actinoplanes missouriensis Actinoplanes sp. Dactylosporangium variesporum Nocardia autotrophica Amycolatopsis orientalis Pseudonocardia autotrophica Saccharopolyspora erythrara Saccharopolyspora hirsuta Saccharothrix sp. [Pg.212]

Yamaki, T., Oikawa, T., Ito, K., et al. 1997. Cloning and sequencing of a nitrile hydratase gene from Pseudonocardia thermophila JCM3095. Journal of Fermentation and Bioengineering, 83 474-7. [Pg.415]

As far as the two-step reaction is concerned, a wide variety of bacteria possess the nitrile hydratase enzyme able to convert nitriles to corresponding amides Arthrohacter [2, 6-8], Bacillus [9, 10], Brevihactcrium [11], Comamonas [12], Coryne-hacterium [13], Nocardia [4], Rhodococcus [14, 15], Pseudonocardia [16], and Pseudomonas [17]. [Pg.273]

Pseudonocardia sp. ENV478 Membrane bioreactor tetrahydrofuran Incomplete MTBE [69]... [Pg.168]

Boxazomyclns. Benzoxazoles from Pseudonocardia sp. with activity against Gram-positive bacteria and anaerobic organisms, including resistant strains with clinical relevance. B. A C,4H,2N405, Mr 316.27, yellow needles, mp. >275 °C (decomp.) B. B C 4H,2N404, Mr 300.27, yellow powder, mp. >270°C (decomp.). [Pg.90]

CYP107BR1 (P450vdh) Pseudonocardia autotrophica 3A4G, 3A50 Vitamin D3 Vitamin D hydroxylase—conversion to active form [784]... [Pg.275]

Peplowski, L., Kubiak, K., 8c Nowak, W. (2008). Mechanical aspects of nitrile hydratase enzymatic activity. Steered molecular dynamics simulations of Pseudonocardia thermophila JCM 3095. Chemical Physics Letters, 467,144. [Pg.1151]

Geranyl-3-methylquinolin- Co.l Ger Me C20H25NO, HREI-MS, UV, IR, Pseudonocardia sp. (CL38489)... [Pg.166]

R. graveolens, Lunasia amara, Haplophyllum dubium, H. latifolium, and the microbial species P. aeruginosa, P. cepacia, P. fluorescens, Pseudonocardia sp., Arthrobacter sp.,... [Pg.188]


See other pages where Pseudonocardia is mentioned: [Pg.824]    [Pg.530]    [Pg.132]    [Pg.576]    [Pg.249]    [Pg.824]    [Pg.372]    [Pg.530]    [Pg.1210]    [Pg.798]    [Pg.798]    [Pg.798]    [Pg.798]    [Pg.798]    [Pg.798]    [Pg.799]    [Pg.799]    [Pg.851]    [Pg.4225]    [Pg.951]    [Pg.234]    [Pg.86]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.166]    [Pg.169]    [Pg.190]    [Pg.204]    [Pg.342]   
See also in sourсe #XX -- [ Pg.166 , Pg.169 , Pg.204 ]




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Pseudonocardia thermophila

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