» Articles » PMID: 33619089

Real-time Measurements of Aminoglycoside Effects on Protein Synthesis in Live Cells

Overview
Specialty Science
Date 2021 Feb 23
PMID 33619089
Citations 17
Authors
Affiliations
Soon will be listed here.
Abstract

The spread of antibiotic resistance is turning many of the currently used antibiotics less effective against common infections. To address this public health challenge, it is critical to enhance our understanding of the mechanisms of action of these compounds. Aminoglycoside drugs bind the bacterial ribosome, and decades of results from in vitro biochemical and structural approaches suggest that these drugs disrupt protein synthesis by inhibiting the ribosome's translocation on the messenger RNA, as well as by inducing miscoding errors. So far, however, we have sparse information about the dynamic effects of these compounds on protein synthesis inside the cell. In the present study, we measured the effect of the aminoglycosides apramycin, gentamicin, and paromomycin on ongoing protein synthesis directly in live cells by tracking the binding of dye-labeled transfer RNAs to ribosomes. Our results suggest that the drugs slow down translation elongation two- to fourfold in general, and the number of elongation cycles per initiation event seems to decrease to the same extent. Hence, our results imply that none of the drugs used in this study cause severe inhibition of translocation.

Citing Articles

A machine-learning based model for automated recommendation of individualized treatment of rifampicin-resistant tuberculosis.

Verboven L, Callens S, Black J, Maartens G, Dooley K, Potgieter S PLoS One. 2024; 19(9):e0306101.

PMID: 39241084 PMC: 11379382. DOI: 10.1371/journal.pone.0306101.


RiboScreen Technology Delivers a Ribosomal Target and a Small-Molecule Ligand for Ribosome Editing to Boost the Production Levels of Tropoelastin, the Monomeric Unit of Elastin.

Wimmer B, Schernthaner J, Edobor G, Friedrich A, Poeltner K, Temaj G Int J Mol Sci. 2024; 25(15).

PMID: 39125999 PMC: 11312584. DOI: 10.3390/ijms25158430.


Sophisticated natural products as antibiotics.

Lewis K, Lee R, Brotz-Oesterhelt H, Hiller S, Rodnina M, Schneider T Nature. 2024; 632(8023):39-49.

PMID: 39085542 PMC: 11573432. DOI: 10.1038/s41586-024-07530-w.


Benzimidazole as a Privileged Scaffold in Drug Design and Discovery.

Kumar R, Marianesan A, Pathak S Curr Top Med Chem. 2024; 24(17):1504-1528.

PMID: 38818908 DOI: 10.2174/0115680266314704240522112439.


Ultrastructural and morphological studies on variables affecting with selected commercial antibiotics.

Muhamad Hendri N, Nor Amdan N, Dounis S, Sulaiman Najib N, Louis S Cell Surf. 2024; 11:100120.

PMID: 38313869 PMC: 10831149. DOI: 10.1016/j.tcsw.2024.100120.


References
1.
Ishikawa M, Garcia-Mateo N, cusak A, Lopez-Hernandez I, Fernandez-Martinez M, Muller M . Lower ototoxicity and absence of hidden hearing loss point to gentamicin C1a and apramycin as promising antibiotics for clinical use. Sci Rep. 2019; 9(1):2410. PMC: 6382871. DOI: 10.1038/s41598-019-38634-3. View

2.
Matt T, Ng C, Lang K, Sha S, Akbergenov R, Shcherbakov D . Dissociation of antibacterial activity and aminoglycoside ototoxicity in the 4-monosubstituted 2-deoxystreptamine apramycin. Proc Natl Acad Sci U S A. 2012; 109(27):10984-9. PMC: 3390888. DOI: 10.1073/pnas.1204073109. View

3.
Camsund D, Lawson M, Larsson J, Jones D, Zikrin S, Fange D . Time-resolved imaging-based CRISPRi screening. Nat Methods. 2019; 17(1):86-92. DOI: 10.1038/s41592-019-0629-y. View

4.
Borovinskaya M, Pai R, Zhang W, Schuwirth B, Holton J, Hirokawa G . Structural basis for aminoglycoside inhibition of bacterial ribosome recycling. Nat Struct Mol Biol. 2007; 14(8):727-32. DOI: 10.1038/nsmb1271. View

5.
Lindner A, Madden R, Demarez A, Stewart E, Taddei F . Asymmetric segregation of protein aggregates is associated with cellular aging and rejuvenation. Proc Natl Acad Sci U S A. 2008; 105(8):3076-81. PMC: 2268587. DOI: 10.1073/pnas.0708931105. View