bulgecin a and acetylglucosamine

bulgecin a has been researched along with acetylglucosamine in 7 studies

Research

Studies (7)

TimeframeStudies, this research(%)All Research%
pre-19900 (0.00)18.7374
1990's0 (0.00)18.2507
2000's2 (28.57)29.6817
2010's5 (71.43)24.3611
2020's0 (0.00)2.80

Authors

AuthorsStudies
Dijkstra, BW; Kalk, KH; van Asselt, EJ1
Avison, MB; Bennett, PM; Crosby, J; Loveridge, EJ; Simm, AM; Walsh, TR1
Boneca, IG; Bonis, M; Guadagnini, S; Werts, C; Williams, A1
Abajy, MY; Arends, K; Broszat, M; Celik, EK; Fercher, C; Goessweiner-Mohr, N; Grohmann, E; Grumet, L; Keller, W; Koraimann, G; Probst, I; Sakinc, T; Schiwon, K; Soellue, C1
Li, M; Skalweit, MJ1
Kaufhold, RT; Krishnan, NP; Kumar, V; Lin, J; van den Akker, F; Vijayaraghavan, J; Zeng, X1
Boggess, WC; Dik, DA; Fisher, JF; Kim, C; Lastochkin, E; Madukoma, CS; Mobashery, S; Shrout, JD; Tomoshige, S1

Other Studies

7 other study(ies) available for bulgecin a and acetylglucosamine

ArticleYear
Crystallographic studies of the interactions of Escherichia coli lytic transglycosylase Slt35 with peptidoglycan.
    Biochemistry, 2000, Feb-29, Volume: 39, Issue:8

    Topics: Acetylglucosamine; Binding Sites; Carbohydrate Sequence; Catalysis; Crystallography, X-Ray; Escherichia coli; Glycosyltransferases; Models, Molecular; Molecular Sequence Data; Peptidoglycan; Proline; Protein Binding; Protein Conformation; Protein Structure, Tertiary

2000
Bulgecin A: a novel inhibitor of binuclear metallo-beta-lactamases.
    The Biochemical journal, 2005, May-01, Volume: 387, Issue:Pt 3

    Topics: Acetylglucosamine; Aeromonas; Bacillus cereus; Bacterial Proteins; beta-Lactamase Inhibitors; beta-Lactamases; Binding Sites; Dose-Response Relationship, Drug; Enzyme Inhibitors; Kinetics; Molecular Structure; Proline; Stenotrophomonas maltophilia; Zinc

2005
The effect of bulgecin A on peptidoglycan metabolism and physiology of Helicobacter pylori.
    Microbial drug resistance (Larchmont, N.Y.), 2012, Volume: 18, Issue:3

    Topics: Acetylglucosamine; Amoxicillin; Animals; Anti-Bacterial Agents; Cell Wall; Drug Synergism; Endopeptidases; Enzyme Inhibitors; Escherichia coli Proteins; Female; Glycoside Hydrolases; HEK293 Cells; Helicobacter Infections; Helicobacter pylori; Humans; Mice; Mice, Inbred C57BL; Models, Molecular; Penicillin-Binding Proteins; Peptidoglycan; Proline; Transfection

2012
TraG encoded by the pIP501 type IV secretion system is a two-domain peptidoglycan-degrading enzyme essential for conjugative transfer.
    Journal of bacteriology, 2013, Volume: 195, Issue:19

    Topics: Acetylglucosamine; Bacterial Proteins; Conjugation, Genetic; Enterococcus faecalis; Enterococcus faecium; Gene Deletion; Gene Expression Regulation, Bacterial; Gene Expression Regulation, Enzymologic; Oligosaccharides; Peptidoglycan; Plasmids; Proline

2013
Bulgecin A as a β-lactam enhancer for carbapenem-resistant
    Drug design, development and therapy, 2016, Volume: 10

    Topics: Acetylglucosamine; Acinetobacter baumannii; Anti-Bacterial Agents; Bacterial Proteins; beta-Lactamases; beta-Lactams; Carbapenems; Enzyme Inhibitors; Proline; Pseudomonas aeruginosa

2016
Structural studies and molecular dynamics simulations suggest a processive mechanism of exolytic lytic transglycosylase from Campylobacter jejuni.
    PloS one, 2018, Volume: 13, Issue:5

    Topics: Acetylglucosamine; Bacterial Proteins; Campylobacter jejuni; Catalytic Domain; Escherichia coli; Glycoside Hydrolases; Molecular Dynamics Simulation; Proline; Recombinant Proteins

2018
Slt, MltD, and MltG of Pseudomonas aeruginosa as Targets of Bulgecin A in Potentiation of β-Lactam Antibiotics.
    ACS chemical biology, 2019, 02-15, Volume: 14, Issue:2

    Topics: Acetylglucosamine; Anti-Bacterial Agents; Bacterial Proteins; beta-Lactams; Microbial Sensitivity Tests; Proline; Pseudomonas aeruginosa

2019