Misread protein creates membrane channels: an essential step in the bactericidal action of aminoglycosides.
Open Access
- 1 August 1986
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 83 (16) , 6164-6168
- https://doi.org/10.1073/pnas.83.16.6164
Abstract
Among the pleiotropic effects of aminoglycosides, their irreversible uptake and their blockade of initiating ribosomes have appeared to explain their bactericidal action, while the contributions of translational misreading and membrane damage and the mechanism of that damage have remained uncertain. We now present evidence that incorporation of misread proteins into the membrane can account for the membrane damage. The bactericidal action thus appears to result from the following sequence, in which each step is essential: slight initial entry of the antibiotic; interaction with chain-elongating ribosomes, resulting in misreading; incorporation of misread protein into the membrane, creating abnormal channels; increased (and irreversible) entry through these channels, and hence increased misreading and formation of channels; and, finally, blockade of initiating ribosomes. This mechanism can account for several previously unexplained observations: that streptomycin uptake requires protein synthesis during, but not after, the lag before the membrane damage; that streptomycin-resistant cells, which fail to take up streptomycin, can do so after treatment by another aminoglycoside; and that puromycin at moderate concentrations accelerates streptomycin uptake, while high concentrations (which release shorter chains) prevent it. In addition, puromycin, prematurely releasing polypeptides of normal sequence, also evidently creates channels, since it is reported to promote streptomycin uptake even in streptomycin-resistant cells. These findings imply that normal membrane proteins must be selected not only for a hydrophobic anchoring surface, but also for a tight fit in the membrane.This publication has 40 references indexed in Scilit:
- Effect of Growth Rate on Streptomycin Accumulation by Escherichia coli and Bacillus megateriumMicrobiology, 1984
- Role of ribosome recycling in uptake of dihydrostreptomycin by sensitive and resistant Escherichia coliBiochimica et Biophysica Acta (BBA) - Nucleic Acids and Protein Synthesis, 1981
- Interaction Between Aminoglycoside Uptake and Ribosomal Resistance MutationsAntimicrobial Agents and Chemotherapy, 1980
- The mechanism of protein secretion across membranesNature, 1980
- Induction of Streptomycin Uptake in Resistant Strains of Escherichia coliAntimicrobial Agents and Chemotherapy, 1979
- Streptomycin causes misreading of natural messenger by interacting with ribosomes after initiation.Proceedings of the National Academy of Sciences, 1978
- Cyclic blockade of initiation sites by streptomycin-damaged ribosomes in Escherichia coli: an explanation for dominance of sensitivityJournal of Molecular Biology, 1973
- Properties of initiation-free polysomes of Escherichia coliBiochemistry, 1973
- A ribosomal ambiguity mutationJournal of Molecular Biology, 1969
- The sequence of some effects of streptomycin in Escherichia coliBiochimica et Biophysica Acta, 1963