Exploring sequence requirements for C₃/C₄ carboxylate recognition in the Pseudomonas aeruginosa cephalosporinase: Insights into plasticity of the AmpC β-lactamase.
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Kinetics of avibactam inhibition against Class A, C, and D β-lactamasesDesign and Exploration of Novel Boronic Acid Inhibitors Reveals Important Interactions with a Clavulanic Acid-Resistant Sulfhydryl-Variable (SHV) β-LactamaseCrystal Structures of KPC-2 -Lactamase in Complex with 3-Nitrophenyl Boronic Acid and the Penam Sulfone PSR-3-226Insights into -Lactamases from Burkholderia Species, Two Phylogenetically Related yet Distinct Resistance Determinantsβ-Lactamase Inhibition by 7-Alkylidenecephalosporin Sulfones: Allylic Transposition and Formation of an Unprecedented Stabilized Acyl-EnzymeIncreasing Chemical Space Coverage by Combining Empirical and Computational Fragment ScreensAnalysis of the Structure and Function of FOX-4 Cephamycinase.New β-lactamase inhibitors: a therapeutic renaissance in an MDR world.Exploring the inhibition of CTX-M-9 by beta-lactamase inhibitors and carbapenems.Unexpected challenges in treating multidrug-resistant Gram-negative bacteria: resistance to ceftazidime-avibactam in archived isolates of Pseudomonas aeruginosa.Activities of ceftazidime, ceftaroline, and aztreonam alone and combined with avibactam against isogenic Escherichia coli strains expressing selected single β-lactamases.Click Chemistry in Lead Optimization of Boronic Acids as β-Lactamase Inhibitors.Avibactam and inhibitor-resistant SHV β-lactamasesInactivation of a class A and a class C β-lactamase by 6β-(hydroxymethyl)penicillanic acid sulfone.Mutations in β-Lactamase AmpC Increase Resistance of Pseudomonas aeruginosa Isolates to Antipseudomonal Cephalosporins.Acinetobacter baumannii rOmpA vaccine dose alters immune polarization and immunodominant epitopes.A kinetic analysis of the inhibition of FOX-4 β-lactamase, a plasmid-mediated AmpC cephalosporinase, by monocyclic β-lactams and carbapenemsSynthesis of α-aminoboronic acids.Interactions of oximino-substituted boronic acids and β-lactams with the CMY-2-derived extended-spectrum cephalosporinases CMY-30 and CMY-42Negative Epistasis and Evolvability in TEM-1 β-Lactamase--The Thin Line between an Enzyme's Conformational Freedom and Disorder.Inhibition of Acinetobacter-Derived Cephalosporinase: Exploring the Carboxylate Recognition Site Using Novel β-Lactamase Inhibitors.
P2860
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P2860
Exploring sequence requirements for C₃/C₄ carboxylate recognition in the Pseudomonas aeruginosa cephalosporinase: Insights into plasticity of the AmpC β-lactamase.
description
2011 nî lūn-bûn
@nan
2011 թուականի Մայիսին հրատարակուած գիտական յօդուած
@hyw
2011 թվականի մայիսին հրատարակված գիտական հոդված
@hy
2011年の論文
@ja
2011年論文
@yue
2011年論文
@zh-hant
2011年論文
@zh-hk
2011年論文
@zh-mo
2011年論文
@zh-tw
2011年论文
@wuu
name
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@ast
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@en
type
label
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@ast
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@en
prefLabel
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@ast
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@en
P2093
P2860
P356
P1433
P1476
Exploring sequence requirement ...... icity of the AmpC β-lactamase.
@en
P2093
Emilia Caselli
Fabio Prati
Magdalena Taracila
Sarah M Drawz
P2860
P304
P356
10.1002/PRO.612
P577
2011-05-03T00:00:00Z