Search Results - "Rak, B."

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  1. 1

    Use of radiographic measurements to diagnose stage B2 preclinical myxomatous mitral valve disease in dogs by Stepien, Rebecca L, Rak, Mariola B, Blume, Lauren M

    “…To investigate the usefulness of radiographic measures of the left atrium and ventricle as surrogates for echocardiographic criteria in identifying dogs with…”
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    Spontaneous remission and relapse of diabetes mellitus in a male dog by Rak, Mariola B., Gilor, Chen, Niessen, Stijn J. M., Furrow, Eva

    Published in Journal of veterinary internal medicine (01-03-2024)
    “…An 8‐year‐old male neutered Miniature Schnauzer was diagnosed with diabetes mellitus based on fasting hyperglycemia and glucosuria after a 2‐week history of…”
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    Clinicopathologic and gastrointestinal effects of administration of prednisone, prednisone with omeprazole, or prednisone with probiotics to dogs: A double‐blind randomized trial by Rak, Mariola B., Moyers, Tamberlyn D., Price, Joshua M., Whittemore, Jacqueline C.

    Published in Journal of veterinary internal medicine (01-03-2023)
    “…Background The efffect of administering of probiotics or twice‐daily omeprazole on glucocorticoid‐induced gastric bleeding in dogs is unknown. Hypothesis…”
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    The role of microRNAs in endometrial cancer and influence on future therapy: focusing on miRNA-21 by Rak, B, Marczewska, J M, Wlodarski, P

    “…MicroRNAs are small noncoding polynucleotides, which are involved in numerous biological processes including cell proliferation, differentiation, embryonic…”
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    Regulation of the bgl operon of Escherichia coli by transcriptional antitermination by Schnetz, K., Rak, B.

    Published in The EMBO journal (01-10-1988)
    “…The bgl operon of Escherichia coli encodes all functions necessary for the regulated uptake and utilization of aryl beta‐glucosides. The operon is unusual,…”
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    IS5: A Mobile Enhancer of Transcription in Escherichia coli by Schnetz, Karin, Rak, Bodo

    “…The cryptic bgl operon of Escherichia coli is activated by the spontaneous insertion of mobile DNA elements. Screening of a collection of such mutations…”
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    Beta-glucoside (bgl) operon of Escherichia coli K-12: nucleotide sequence, genetic organization, and possible evolutionary relationship to regulatory components of two Bacillus subtilis genes by SCHNETZ, K, TOLOCZYKI, C, RAK, B

    Published in Journal of Bacteriology (01-06-1987)
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  8. 8

    LicT, a Bacillus subtilis transcriptional antiterminator protein of the BglG family by Schnetz, Karin, Stulke, Jorg, Gertz, Silke, Kruger, Steffen

    Published in Journal of Bacteriology (01-04-1996)
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  9. 9

    β-Glucoside Permease Represses the bgl Operon of Escherichia Coli by Phosphorylation of the Antiterminator Protein and also Interacts with Glucose-Specific Enzyme III, the Key Element in Catabolite Control by Schnetz, Karin, Rak, Bodo

    “…The β-glucoside (bgl) operon of Escherichia coli is subject to both positive control by transcriptional termination/antitermination and negative control by the…”
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    Identification of catalytic residues in the beta-glucoside permease of Escherichia coli by site-specific mutagenesis and demonstration of interdomain cross-reactivity between the beta-glucoside and glucose systems by K Schnetz, S L Sutrina, M H Saier, Jr, B Rak

    Published in The Journal of biological chemistry (15-08-1990)
    “…beta-Glucoside Enzyme II (IIBgl) of the Escherichia coli phosphotransferase system transports and phosphorylates beta-glucosides, whereas the glucose Enzyme…”
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    Sugar permeases of the bacterial phosphoenolpyruvate-dependent phosphotransferase system: sequence comparisons by Saier, Jr, M H, Yamada, M, Erni, B, Suda, K, Lengeler, J, Ebner, R, Argos, P, Rak, B, Schnetz, K, Lee, C A

    Published in The FASEB journal (01-03-1988)
    “…The amino acyl sequences of eight permeases (enzymes II and enzyme II-III pairs) of the bacterial phosphoenolpyruvate:sugar phosphotransferase system (PTS)…”
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    Identification of a site in the phosphocarrier protein, HPr, which influences its interactions with sugar permeases of the bacterial phosphotransferase system: kinetic analyses employing site-specific mutants by Koch, S, Sutrina, S L, Wu, L F, Reizer, J, Schnetz, K, Rak, B, Saier, Jr, M H

    Published in Journal of Bacteriology (01-02-1996)
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  13. 13

    Location of the bglA gene on the physical map of Escherichia coli by JUNNE, T, SCHNETZ, K, RAK, B

    Published in Journal of bacteriology (01-12-1990)
    “…The bglA gene of Escherichia coli encodes phospho- beta -glucosidase A. In the course of our studies on the beta -glucosidase catabolism of E. coli , we were…”
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  14. 14

    Insertion element IS5 contains a third gene by Rak, B., Reutern, M.

    Published in The EMBO journal (01-04-1984)
    “…We have previously shown that IS5 contains two genes encoded on opposite DNA strands within the same stretch of DNA. Here we present evidence that a third gene…”
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    A 3.6‐kbp segment from the vir region of Ti plasmids contains genes responsible for border sequence‐directed production of T region circles in E. coli by Alt‐Moerbe, Juliane, Rak, Bodo, Schröder, Joachim

    Published in The EMBO journal (01-06-1986)
    “…The vir region of Ti plasmids is responsible for the transfer of the T region from Agrobacteria to plant cells; previous experiments suggested that formation…”
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  16. 16

    Catabolite control of Escherichia coli regulatory protein BglG activity by antagonistically acting phosphorylations by Görke, Boris, Rak, Bodo

    Published in The EMBO journal (15-06-1999)
    “…In bacteria various sugars are taken up and concomitantly phosphorylated by sugar‐specific enzymes II (EII) of the phosphoenolpyruvate:sugar phosphotransferase…”
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  17. 17

    Escherichia coli Insertion Sequence IS150: Transposition via Circular and Linear Intermediates by Haas, Markus, Rak, Bodo

    Published in Journal of Bacteriology (01-11-2002)
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  18. 18

    Activity of Lac repressor anchored to the Escherichia coli inner membrane by Görke, Boris, Reinhardt, Jana, Rak, Bodo

    Published in Nucleic acids research (01-01-2005)
    “…The transient inactivation of gene regulatory proteins by their sequestration to the cytoplasmic membrane in response to cognate signals is an increasingly…”
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