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Journal Abstract Search


183 related items for PubMed ID: 17628063

  • 1. O-aryloxycarbonyl hydroxamates: new beta-lactamase inhibitors that cross-link the active site.
    Wyrembak PN, Babaoglu K, Pelto RB, Shoichet BK, Pratt RF.
    J Am Chem Soc; 2007 Aug 08; 129(31):9548-9. PubMed ID: 17628063
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  • 2. Kinetics and mechanism of inhibition of a serine beta-lactamase by O-aryloxycarbonyl hydroxamates.
    Pelto RB, Pratt RF.
    Biochemistry; 2008 Nov 18; 47(46):12037-46. PubMed ID: 18942857
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  • 8. Inhibition of class A and class C beta-lactamases by penems: crystallographic structures of a novel 1,4-thiazepine intermediate.
    Nukaga M, Abe T, Venkatesan AM, Mansour TS, Bonomo RA, Knox JR.
    Biochemistry; 2003 Nov 18; 42(45):13152-9. PubMed ID: 14609325
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  • 9. Specificity of extended O-aryloxycarbonyl hydroxamates as inhibitors of a class C β-lactamase.
    Malico AA, Dave K, Adediran SA, Pratt RF.
    Bioorg Med Chem; 2019 Apr 01; 27(7):1430-1436. PubMed ID: 30792103
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  • 10. Irreversible inhibition of metallo-beta-lactamase (IMP-1) by 3-(3-mercaptopropionylsulfanyl)propionic acid pentafluorophenyl ester.
    Kurosaki H, Yamaguchi Y, Higashi T, Soga K, Matsueda S, Yumoto H, Misumi S, Yamagata Y, Arakawa Y, Goto M.
    Angew Chem Int Ed Engl; 2005 Jun 20; 44(25):3861-4. PubMed ID: 15892033
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  • 11. 4-Substituted trinems as broad spectrum beta-lactamase inhibitors: structure-based design, synthesis, and biological activity.
    Plantan I, Selic L, Mesar T, Anderluh PS, Oblak M, Prezelj A, Hesse L, Andrejasic M, Vilar M, Turk D, Kocijan A, Prevec T, Vilfan G, Kocjan D, Copar A, Urleb U, Solmajer T.
    J Med Chem; 2007 Aug 23; 50(17):4113-21. PubMed ID: 17665896
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  • 12. Metallic nanoparticles bioassay for Enterobacter cloacae P99 beta-lactamase activity and inhibitor screening.
    Liu R, Teo W, Tan S, Feng H, Padmanabhan P, Xing B.
    Analyst; 2010 May 23; 135(5):1031-6. PubMed ID: 20419253
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  • 13. Covalent inhibition of serine β-lactamases by novel hydroxamic acid derivatives.
    Tilvawala R, Pratt RF.
    Biochemistry; 2013 May 28; 52(21):3712-20. PubMed ID: 23679223
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  • 14. Molecular modeling of Henry-Michaelis and acyl-enzyme complexes between imipenem and Enterobacter cloacae P99 beta-lactamase.
    Fenollar-Ferrer C, Donoso J, Frau J, Muñoz F.
    Chem Biodivers; 2005 May 28; 2(5):645-56. PubMed ID: 17192008
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  • 15. Probing, inhibition, and crystallographic characterization of metallo-beta-lactamase (IMP-1) with fluorescent agents containing dansyl and thiol groups.
    Kurosaki H, Yamaguchi Y, Yasuzawa H, Jin W, Yamagata Y, Arakawa Y.
    ChemMedChem; 2006 Sep 28; 1(9):969-72. PubMed ID: 16937423
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  • 16. Unanticipated inhibition of the metallo-beta-lactamase from Bacteroides fragilis by 4-morpholineethanesulfonic acid (MES): a crystallographic study at 1.85-A resolution.
    Fitzgerald PM, Wu JK, Toney JH.
    Biochemistry; 1998 May 12; 37(19):6791-800. PubMed ID: 9578564
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  • 18. A Lysine-Targeted Affinity Label for Serine-β-Lactamase Also Covalently Modifies New Delhi Metallo-β-lactamase-1 (NDM-1).
    Thomas PW, Cammarata M, Brodbelt JS, Monzingo AF, Pratt RF, Fast W.
    Biochemistry; 2019 Jun 25; 58(25):2834-2843. PubMed ID: 31145588
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  • 19. Inhibition of serine beta-lactamases by vanadate-catechol complexes.
    Adediran SA, Pratt RF.
    Biochemistry; 2008 Sep 09; 47(36):9467-74. PubMed ID: 18702503
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  • 20. The D-methyl group in beta-lactamase evolution: evidence from the Y221G and GC1 mutants of the class C beta-lactamase of Enterobacter cloacae P99.
    Adediran SA, Zhang Z, Nukaga M, Palzkill T, Pratt RF.
    Biochemistry; 2005 May 24; 44(20):7543-52. PubMed ID: 15895997
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