CHLORAMPHENICOL-SENSITIVE AND -INSENSITIVE PHASES OF THE LETHAL ACTION OF STREPTOMYCIN
Charles Hurwitz, Carmen L. Rosano
Abstract
Charles Hurwitz, Carmen L. Rosano
Abstract
Hurwitz, Charles (Veterans Administration Hospital, Albany, N.Y.) and Carmen L. Rosano. Chloramphenicol-sensitive and -insensitive phases of the lethal action of streptomycin. J. Bacteriol. 83:1202-1209. 1962.-If chloramphenicol is added to sensitive Escherichia coli cells at the same time as streptomycin, the lethal effect of the latter drug is prevented. If the cells receive a prior exposure to streptomycin before the addition of chloramphenicol, the bacteria are then susceptible to killing by streptomycin in the presence of chloramphenicol. These results are interpreted to mean that the lethal action of streptomycin can be divided into chloramphenicol-sensitive and chloramphenicol-insensitive stages. It is proposed that during the chloramphenicol-sensitive stage, a streptomycin-initiated protein synthesis occurs, and that this protein synthesis must precede the actual killing by streptomycin. Inorganic phosphate has no effect on the chloramphenicol-sensitive phase, but does prevent killing by streptomycin. Evidence is presented arguing against the formation of a leaky permeability barrier as being the primary cause of death of cells exposed to streptomycin.
OpenAlex reports 20 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
Hurwitz, Charles (Veterans Administration Hospital, Albany, N.Y.) and Carmen L. Rosano. Chloramphenicol-sensitive and -insensitive phases of the lethal action of streptomycin. J. Bacteriol. 83:1202-1209. 1962.-If chloramphenicol is added to sensitive Escherichia coli cells at the same time as streptomycin, the lethal effect of the latter drug is prevented. If the cells receive a prior exposure to streptomycin before the addition of chloramphenicol, the bacteria are then susceptible to killing by streptomycin in the presence of chloramphenicol. These results are interpreted to mean that the lethal action of streptomycin can be divided into chloramphenicol-sensitive and chloramphenicol-insensitive stages. It is proposed that during the chloramphenicol-sensitive stage, a streptomycin-initiated protein synthesis occurs, and that this protein synthesis must precede the actual killing by streptomycin. Inorganic phosphate has no effect on the chloramphenicol-sensitive phase, but does prevent killing by streptomycin. Evidence is presented arguing against the formation of a leaky permeability barrier as being the primary cause of death of cells exposed to streptomycin.
Key concepts: Streptomycin, Chloramphenicol, Biology, Microbiology, Antibiotics, Escherichia coli, Biochemistry, Gene