Abstract
We have previously reported the isolation from E. coli of a specific inhibitor of polypeptide chain initiation that is rendered ineffective when active aminoacylation of transfer RNA is taking place; this is normally the case during natural messenger RNA translation. Surprisingly, the inhibitory activity appears to be a hitherto unrecognized property of the chain elongation factor G. The following hold for preparations purified for either translocase or inhibitor activity: (1) equal electrophoretic mobility on polyacrylamide gels; (2) equal specific activities for (a) inhibition of initiation, (b) translocation, and (c) ribosome-dependent, uncoupled GTPase; and (3) similar heat sensitivity of translocase and inhibitor activities in a temperature-sensitive E. coli mutant with an altered elongation factor G. Different sites are apparently involved in translocation and inhibition because the former, but not the latter, is sensitive to p-chloromercuribenzoate and fusidic acid.
MeSH Terms
Acylation
Bacterial Proteins/biosynthesis
Carbon Radioisotopes
Chloromercuribenzoates/pharmacology
Chromatography, Gel
Electrophoresis, Polyacrylamide Gel
Escherichia coli/analysis,drug effects,metabolism
Fusidic Acid/pharmacology
Hot Temperature
Mutation
Peptide Chain Initiation, Translational/drug effects
Peptide Elongation Factors/isolation & purification
Phenylalanine/metabolism
Poly U/metabolism
Protein Biosynthesis/drug effects
RNA, Messenger/metabolism
RNA, Transfer/metabolism
Translocation, Genetic
Chemicals
Bacterial Proteins
Carbon Radioisotopes
Chloromercuribenzoates
Peptide Elongation Factors
RNA, Messenger
Poly U
Phenylalanine
Fusidic Acid
RNA, Transfer
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Lee-Huang S
Lee H
Ochoa S
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18 references, click to expand
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