5iqa Citations

Antibiotic Binding Drives Catalytic Activation of Aminoglycoside Kinase APH(2″)-Ia.

Structure 24 935-45 (2016)
Related entries: 5byl, 5iqb, 5iqc, 5iqd, 5iqe, 5iqf, 5iqg, 5iqh, 5iqi

Cited: 6 times
EuropePMC logo PMID: 27161980

Abstract

APH(2″)-Ia is a widely disseminated resistance factor frequently found in clinical isolates of Staphylococcus aureus and pathogenic enterococci, where it is constitutively expressed. APH(2″)-Ia confers high-level resistance to gentamicin and related aminoglycosides through phosphorylation of the antibiotic using guanosine triphosphate (GTP) as phosphate donor. We have determined crystal structures of the APH(2″)-Ia in complex with GTP analogs, guanosine diphosphate, and aminoglycosides. These structures collectively demonstrate that aminoglycoside binding to the GTP-bound kinase drives conformational changes that bring distant regions of the protein into contact. These changes in turn drive a switch of the triphosphate cofactor from an inactive, stabilized conformation to a catalytically competent active conformation. This switch has not been previously reported for antibiotic kinases or for the structurally related eukaryotic protein kinases. This catalytic triphosphate switch presents a means by which the enzyme can curtail wasteful hydrolysis of GTP in the absence of aminoglycosides, providing an evolutionary advantage to this enzyme.

Articles - 5iqa mentioned but not cited (1)

  1. Plasticity of Aminoglycoside Binding to Antibiotic Kinase APH(2″)-Ia. Caldwell SJ, Berghuis AM. Antimicrob Agents Chemother 62 e00202-18 (2018)


Reviews citing this publication (2)

  1. Amikacin: Uses, Resistance, and Prospects for Inhibition. Ramirez MS, Tolmasky ME. Molecules 22 E2267 (2017)
  2. Comprehensive review of chemical strategies for the preparation of new aminoglycosides and their biological activities. Thamban Chandrika N, Garneau-Tsodikova S. Chem Soc Rev 47 1189-1249 (2018)

Articles citing this publication (3)

  1. Structural Basis for Kinase-Mediated Macrolide Antibiotic Resistance. Fong DH, Burk DL, Blanchet J, Yan AY, Berghuis AM. Structure 25 750-761.e5 (2017)
  2. Structural basis for the diversity of the mechanism of nucleotide hydrolysis by the aminoglycoside-2''-phosphotransferases. Smith CA, Toth M, Stewart NK, Maltz L, Vakulenko SB. Acta Crystallogr D Struct Biol 75 1129-1137 (2019)
  3. Flipping the Switch "On" for Aminoglycoside-Resistance Enzymes: The Mechanism Is Finally Revealed! Ngo HX, Garneau-Tsodikova S. Structure 24 1011-1013 (2016)