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Updated: Jul 19, 2026

A Facile Protocol to Generate Site-Specifically Acetylated Proteins in Escherichia Coli
Published on: December 9, 2017
Origins of the aminoglycoside modifying enzymes
1Department of Medicine, Case Western Reserve University, Cleveland, Ohio 44106, USA. pxr17@po.cwru.edu
Abstract:
The aminoglycosides represent an important class of antibiotics for the treatment of bacterial infections. Interaction of the aminoglycosides with the bacterial ribosome inhibits protein synthesis, which is their primary mode of action. However, in gram negative bacteria, the ability of aminoglycosides to perturb the cell envelope is also an important mode of action. A common mechanism for aminoglycoside resistance involves modifying enzymes which acetylate, phosphorylate or adenylylate the aminoglycoside. There exists a staggering number of aminoglycoside modifying enzymes in clinical isolates of bacteria. This diversity suggests multiple origins for the present day enzymes. In this review, the possible origins of these modifying enzymes will be presented. Previous proposals describing the origins of these enzymes will be reviewed and potential mechanisms for the development of new aminoglycoside modifying enzymes will be discussed.
Insights
Aminoglycoside antibiotics fight bacterial infections by inhibiting protein synthesis. This review explores the diverse origins of aminoglycoside-modifying enzymes, a key mechanism of bacterial resistance.
Area of Science:
- Microbiology
- Biochemistry
- Molecular Biology
Background:
- Aminoglycosides are crucial antibiotics targeting bacterial protein synthesis.
- In Gram-negative bacteria, they also disrupt the cell envelope.
- Bacterial resistance often involves aminoglycoside-modifying enzymes (AMEs).
Purpose of the Study:
- To review the diverse origins of aminoglycoside-modifying enzymes.
- To discuss proposed evolutionary pathways for AMEs.
- To explore mechanisms for the emergence of new AMEs.
Main Methods:
- Literature review of existing studies on aminoglycoside resistance.
- Analysis of proposed evolutionary origins of AMEs.
- Discussion of potential mechanisms for AME development.
Main Results:
- A wide array of AMEs exists in clinical bacterial isolates.
- The diversity of AMEs suggests multiple evolutionary origins.
- Previous proposals on AME origins are examined.
Conclusions:
- The evolution of AMEs is complex, involving multiple origins.
- Understanding AME evolution is critical for combating antibiotic resistance.
- Further research into AME development mechanisms is warranted.
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