Non-catalytic-Region Mutations Conferring Transition of Class A beta-Lactamases Into ESBLs

  • Cao, Thinh-Phat
  • Yi, Hyojeong
  • Dhanasingh, Immanuel
  • Ghosh, Suparna
  • Choi, Jin Myung
  • ... Kim, Heenam Stanley
  • 외 3명
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초록

Despite class A ESBLs carrying substitutions outside catalytic regions, such as Cys69Tyr or Asn136Asp, have emerged as new clinical threats, the molecular mechanisms underlying their acquired antibiotics-hydrolytic activity remains unclear. We discovered that this non-catalytic-region (NCR) mutations induce significant dislocation of beta 3-beta 4 strands, conformational changes in critical residues associated with ligand binding to the lid domain, dynamic fluctuation of omega-loop and beta 3-beta 4 elements. Such structural changes increase catalytic regions' flexibility, enlarge active site, and thereby accommodate third-generation cephalosporin antibiotics, ceftazidime (CAZ). Notably, the electrostatic property around the oxyanion hole of Cys69Tyr ESBL is significantly changed, resulting in possible additional stabilization of the acyl-enzyme intermediate. Interestingly, the NCR mutations are as effective for antibiotic resistance by altering the structure and dynamics in regions mediating substrate recognition and binding as single amino-acid substitutions in the catalytic region of the canonical ESBLs. We believe that our findings are crucial in developing successful therapeutic strategies against diverse class A ESBLs, including the new NCR-ESBLs.

키워드

extended-spectrum &#946-lactamasenon-catalytic-region ESBLceftazidimeantibiotic resistanceX-ray crystallographySITE-DIRECTED MUTAGENESISANTIBIOTIC-RESISTANCEMOLECULAR-DYNAMICSOMEGA-LOOPSUBSTRATEMUTANTSUBSTITUTIONCEFTAZIDIMEREFINEMENTEVOLUTION
제목
Non-catalytic-Region Mutations Conferring Transition of Class A beta-Lactamases Into ESBLs
저자
Cao, Thinh-PhatYi, HyojeongDhanasingh, ImmanuelGhosh, SuparnaChoi, Jin MyungLee, Kun HoRyu, SeolKim, Heenam StanleyLee, Sung Haeng
DOI
10.3389/fmolb.2020.598998
발행일
2020-11-27
유형
Article
저널명
Frontiers in Molecular Biosciences
7