نتایج جستجو برای: 3(4h)

تعداد نتایج: 48  

Journal: :Genetics 2000
M F Lyon J C Schimenti E P Evans

Previously a deletion in mouse chromosome 17, T(22H), was shown to behave like a t allele of the t complex distorter gene Tcd1, and this was attributed to deletion of this locus. Seven further deletions are studied here, with the aim of narrowing the critical region in which Tcd1 must lie. One deletion, T(30H), together with three others, T(31H), T(33H), and T(36H), which extended more proximal...

2015
Hackwon Do Ji-Sook Yun Chang Woo Lee Young Jun Choi Hye-Yeon Kim Youn-Jung Kim Hyun Park Jeong Ho Chang Jun Hyuck Lee

The psychrophilic organism Colwellia psychrerythraea strain 34H produces extracellular polysaccharide substances to tolerate cold environments. Sedoheptulose 7-phosphate isomerase (GmhA) is essential for producing d-glycero-d-mannoheptose 7-phosphate, a key mediator in the lipopolysaccharide biosynthetic pathway. We determined the crystal structure of GmhA from C. psychrerythraea strain 34H (Cp...

Journal: :Cryobiology 2006
Karen Junge Hajo Eicken Brian D Swanson Jody W Deming

Direct evidence for metabolism in a variety of frozen environments has pushed temperature limits for bacterial activity to increasingly lower temperatures, so far to -20 degrees C. To date, the metabolic activities of marine psychrophilic bacteria, important components of sea-ice communities, have not been studied in laboratory culture, not in ice and not below -12 degrees C. We measured [3H]-l...

Journal: :Applied and environmental microbiology 2003
Karen Junge Hajo Eicken Jody W Deming

We examined the Arctic bacterium Colwellia psychrerythraea strain 34H for motility at temperatures from -1 to -15 degrees C by using transmitted-light microscopy in a temperature-controlled laboratory. The results, showing motility to -10 degrees C, indicate much lower temperatures to be permissive of motility than previously reported (5 degrees C), with implications for microbial activity in f...

Journal: :Journal of the American Chemical Society 2015
Sara Carillo Angela Casillo Giuseppina Pieretti Ermenegilda Parrilli Filomena Sannino Maddalena Bayer-Giraldi Sandro Cosconati Ettore Novellino Marcela Ewert Jody W Deming Rosa Lanzetta Gennaro Marino Michelangelo Parrilli Antonio Randazzo Maria L Tutino M Michela Corsaro

The low temperatures of polar regions and high-altitude environments, especially icy habitats, present challenges for many microorganisms. Their ability to live under subfreezing conditions implies the production of compounds conferring cryotolerance. Colwellia psychrerythraea 34H, a γ-proteobacterium isolated from subzero Arctic marine sediments, provides a model for the study of life in cold ...

Journal: :Applied and environmental microbiology 2004
Adrienne L Huston Barbara Methe Jody W Deming

The limited database on cold-active extracellular proteases from marine bacteria was expanded by successful purification and initial biochemical and structural characterization of a family M1 aminopeptidase (designated ColAP) produced by the marine psychrophile Colwellia psychrerythraea strain 34H. The 71-kDa enzyme displayed a low optimum temperature (19 degrees C) and narrow pH range (pH 6 to...

Journal: :Biochemical Society transactions 1989
J E Thomas-Oates A Dell

14. Barber, M., Bordoli, R. S., Sedgwick, R. D. & ‘lylcr, A. N . ( 198 I ) J. Chem. Soc. Chem. Commirri. 7,325-327 Biemann, K. & Martin, S. A. ( 1 987) Moss Spectrom. Rev. 6 , 1-76 Gibson, B. W. & Biemann, K. (1984) /’roc. Nor/. Aciid. Sci. U.S.A. 8 I , 1956I960 Allmaier, G., Chao, B. H., Khorana, H. G. & Biemann, K. ( 1986) in Annual Conference on Moss Spectrometty w i r l Allied Topics 34h, p...

2016
Xia Wan Yun-Feng Peng Xue-Rong Zhou Yang-Min Gong Feng-Hong Huang Gabriel Moncalián

BACKGROUND Colwellia psychrerythraea 34H is a psychrophilic bacterium able to produce docosahexaenoic acid (DHA). Polyketide synthase pathway is assumed to be responsible for DHA production in marine bacteria. RESULTS Five pfa genes from strain 34H were confirmed to be responsible for DHA formation by heterogeneous expression in Escherichia coli. The complexity of fatty acid profile of this s...

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