Literature DB >> 21958034

Antibiotic selection by the promiscuous aminoglycoside acetyltransferase-(3)-IIIb is thermodynamically achieved through the control of solvent rearrangement.

Adrianne L Norris1, Engin H Serpersu.   

Abstract

The results presented here show the first known observation of opposite signs of change in heat capacity (ΔC(p)) of two structurally similar ligands binding to the same protein site. Neomycin and paromomycin are aminoglycoside antibiotics that are substrates for the resistance-conferring enzyme, the aminoglycoside acetyltransferase-(3)-IIIb (AAC). These antibiotics are identical to one another except at the 6' position where neomycin has an amine and paromomycin has a hydroxyl. The opposite trends in ΔC(p) of binding of these two drugs to AAC suggest a differential exposure of nonpolar amino acid side chains. Nuclear magnetic resonance experiments further demonstrate significantly different changes in AAC upon interaction with neomycin and paromomycin. Experiments in H(2)O and D(2)O reveal the first observed temperature dependence of solvent and vibrational contributions to ΔC(p). Coenzyme A significantly influences these effects. Together, the data suggest that AAC exploits solvent properties to facilitate favorable thermodynamic selection of antibiotics.

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Year:  2011        PMID: 21958034     DOI: 10.1021/bi2011916

Source DB:  PubMed          Journal:  Biochemistry        ISSN: 0006-2960            Impact factor:   3.162


  4 in total

1.  Ligand promiscuity through the eyes of the aminoglycoside N3 acetyltransferase IIa.

Authors:  Adrianne L Norris; Engin H Serpersu
Journal:  Protein Sci       Date:  2013-07       Impact factor: 6.725

2.  Substrate-dependent switching of the allosteric binding mechanism of a dimeric enzyme.

Authors:  Lee Freiburger; Teresa Miletti; Siqi Zhu; Oliver Baettig; Albert Berghuis; Karine Auclair; Anthony Mittermaier
Journal:  Nat Chem Biol       Date:  2014-09-14       Impact factor: 15.040

3.  Investigating the promiscuity of the chloramphenicol nitroreductase from Haemophilus influenzae towards the reduction of 4-nitrobenzene derivatives.

Authors:  Keith D Green; Marina Y Fosso; Abdelrahman S Mayhoub; Sylvie Garneau-Tsodikova
Journal:  Bioorg Med Chem Lett       Date:  2019-02-21       Impact factor: 2.823

4.  Aminoglycoside binding and catalysis specificity of aminoglycoside 2″-phosphotransferase IVa: A thermodynamic, structural and kinetic study.

Authors:  Elise Kaplan; Jean-François Guichou; Laurent Chaloin; Simone Kunzelmann; Nadia Leban; Engin H Serpersu; Corinne Lionne
Journal:  Biochim Biophys Acta       Date:  2016-01-21
  4 in total

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