Gale & Folkes (1953a, b) showed that there is an inorease in the nucleic acid content of washed sus- pensions of Staphylococcus aureus (Micrococcu4s pyogenes var. aureus) when these are incubated in the presence of glucose, purines, pyrimidines and a mixture of all those amino acids necessary for protein synthesis. Omission of an essential amino acid resulted in cessation of nucleic acid synthesis. In the presence of the amino acid mixture, protein synthesis also occurred; the addition of a growth- limiting concentration of chloramphenicol gave rise to complete inhibition of protein synthesis but stimulated formation of ribonucleic acid (RNA). A number of investigations with amino acid- requiring mutants has since confirmed that nucleic acid synthesis in bacteria will take place only if all the amino acids required for protein synthesis are either present in the medium or can be synthesized by the organism (Borek, Ryan & Rickenbach, 1955; Gros & Gros, 1956; Pardee & Prestidge, 1956). Pardee, Paigen & Prestidge (1957) and Neidhardt & Gros (1957) have confirmed that RNA synthesis will occur in the presence of chloram- phenicol but have shown that the RNA formed under these conditions differs from 'normal' RNA in electrophoretic mobility, molecular weight and stability.
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Gale et al. (1958) studied this question.
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