Search Results - "Bourne, Philip C."

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  1. 1

    Crystal Structure of Bacillus anthracis Dihydrofolate Reductase with the Dihydrophthalazine-Based Trimethoprim Derivative RAB1 Provides a Structural Explanation of Potency and Selectivity by BOURNE, Christina R, BUNCE, Richard A, BOURNE, Philip C, DARRELL BERLIN, K, BARROW, Esther W, BARROW, William W

    Published in Antimicrobial Agents and Chemotherapy (01-07-2009)
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    In Vitro Efficacy of New Antifolates against Trimethoprim-Resistant Bacillus anthracis by BARROW, Esther W, DREIER, Jürg, REINELT, Stefan, BOURNE, Philip C, BARROW, William W

    Published in Antimicrobial Agents and Chemotherapy (01-12-2007)
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  3. 3

    Synthesis and biological evaluation of 2,4-diaminopyrimidine-based antifolate drugs against Bacillus anthracis by Nammalwar, Baskar, Muddala, N Prasad, Bourne, Christina R, Henry, Mary, Bourne, Philip C, Bunce, Richard A, Barrow, Esther W, Berlin, K Darrell, Barrow, William W

    Published in Molecules (Basel, Switzerland) (17-03-2014)
    “…Due to the innate ability of bacteria to develop resistance to available antibiotics, there is a critical need to develop new agents to treat more resilient…”
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  4. 4

    Evolution of a 4‑Benzyloxy-benzylamino Chemotype to Provide Efficacious, Potent, and Isoform Selective PPARα Agonists as Leads for Retinal Disorders by Dou, Xiaozheng, Nath, Dinesh, Shin, Henry, Nurmemmedov, Elmar, Bourne, Philip C, Ma, Jian-Xing, Duerfeldt, Adam S

    Published in Journal of medicinal chemistry (26-03-2020)
    “…Peroxisome proliferator-activated receptor alpha (PPARα) is expressed in retinal Müller cells, endothelial cells, and in retinal pigment epithelium; agonism…”
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  5. 5

    Functional Cloning of Bacillus anthracis Dihydrofolate Reductase and Confirmation of Natural Resistance to Trimethoprim by BARROW, Esther W, BOURNE, Philip C, BARROW, William W

    Published in Antimicrobial Agents and Chemotherapy (01-12-2004)
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  6. 6

    Synthesis and biological activity of substituted 2,4-diaminopyrimidines that inhibit Bacillus anthracis by Nammalwar, Baskar, Bunce, Richard A., Berlin, K. Darrell, Bourne, Christina R., Bourne, Philip C., Barrow, Esther W., Barrow, William W.

    Published in European journal of medicinal chemistry (01-08-2012)
    “…A series of substituted 2,4-diaminopyrimidines 1 has been prepared and evaluated for activity against Bacillus anthracis using previously reported…”
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    Modified 2,4-diaminopyrimidine-based dihydrofolate reductase inhibitors as potential drug scaffolds against Bacillus anthracis by Nammalwar, Baskar, Bourne, Christina R., Wakeham, Nancy, Bourne, Philip C., Barrow, Esther W., Muddala, N. Prasad, Bunce, Richard A., Berlin, K. Darrell, Barrow, William W.

    Published in Bioorganic & medicinal chemistry (01-01-2015)
    “…[Display omitted] The current Letter describes the synthesis and biological evaluation of dihydrophthalazine-appended 2,4-diaminopyrimidine (DAP) inhibitors…”
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  9. 9

    The atomic-resolution structure of a novel bacterial esterase by Bourne, Philip C, Isupov, Michail N, Littlechild, Jennifer A

    Published in Structure (London) (01-02-2000)
    “…Background: A novel bacterial esterase that cleaves esters on halogenated cyclic compounds has been isolated from an Alcaligenes species. This esterase 713 is…”
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  10. 10

    Structure–activity relationship for enantiomers of potent inhibitors of B. anthracis dihydrofolate reductase by Bourne, Christina R., Wakeham, Nancy, Nammalwar, Baskar, Tseitin, Vladimir, Bourne, Philip C., Barrow, Esther W., Mylvaganam, Shankari, Ramnarayan, Kal, Bunce, Richard A., Berlin, K. Darrell, Barrow, William W.

    Published in Biochimica et biophysica acta (01-01-2013)
    “…Background: Bacterial resistance to antibiotic therapies is increasing and new treatment options are badly needed. There is an overlap between these resistant…”
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  11. 11

    Inhibition of Bacterial Dihydrofolate Reductase by 6-Alkyl-2,4-diaminopyrimidines by Nammalwar, Baskar, Bourne, Christina R., Bunce, Richard A., Wakeham, Nancy, Bourne, Philip C., Ramnarayan, Kal, Mylvaganam, Shankari, Berlin, K. Darrell, Barrow, Esther W., Barrow, William W.

    Published in ChemMedChem (01-11-2012)
    “…(±)‐6‐Alkyl‐2,4‐diaminopyrimidine‐based inhibitors of bacterial dihydrofolate reductase (DHFR) have been prepared and evaluated for biological potency against…”
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    Microwave-assisted Heck Synthesis of Substituted 2,4-Diaminopyrimidine-based Antibiotics by Nammalwar, Baskar, Bunce, Richard A., Berlin, K. Darrell, Bourne, Christina R., Bourne, Philip C., Barrow, Esther W., Barrow, William W.

    “…Organic Preparations and Procedures International Microwave-assisted Heck Synthesis of Substituted 2,4-Diaminopyrimidine-based Antibiotics…”
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  16. 16

    Approaches to Iodinated Derivatives of Vanillin and Isovanillin by Nammalwar, Baskar, Bunce, Richard A., Berlin, K. Darrell, Bourne, Christina R., Bourne, Philip C., Barrow, Esther W., Barrow, William W.

    “…Organic Preparations and Procedures International Approaches to Iodinated Derivatives of Vanillin and Isovanillin…”
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    Genetic basis for sulfonamide resistance in Bacillus anthracis by Valderas, Michelle Wright, Bourne, Philip C, Barrow, William W

    “…Natural resistance of field strains of Bacillus anthracis to drugs from the sulfonamide class of antimicrobials that act by inhibiting dihydropteroate synthase…”
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    Three-dimensional structures of a humanized anti-IFN-γ Fab (HuZAF) in two crystal forms by Bourne, Philip C., Terzyan, Simon S., Cloud, Gwendolyn, Landolfi, Nicholas F., Vásquez, Maximiliano, Edmundson, Allen B.

    “…Three‐dimensional structures were determined for two crystal forms (orthorhombic P212121 and monoclinic C2) of the Fab from the humanized version of a murine…”
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    Comparison of the three-dimensional structures of a human Bence-Jones dimer crystallized on Earth and aboard US Space Shuttle Mission STS-95 by Terzyan, Simon S., Bourne, Christina R., Ramsland, Paul A., Bourne, Philip C., Edmundson, Allen B.

    Published in Journal of molecular recognition (01-03-2003)
    “…Crystals of a human (Sea) Bence‐Jones dimer were produced in a capillary by vapor diffusion under microgravity conditions in the 9 day US Space Shuttle Mission…”
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