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Inhibition of the peptide bond synthesizing cycle by chloramphenicol

Insights

Chloramphenicol partially inhibits peptide release from bacterial ribosomes, suggesting it doesn't directly block peptidyl transferase. This antibiotic likely affects an earlier step in bacterial protein synthesis.

Area of Science:

  • Molecular Biology
  • Biochemistry
  • Microbiology

Background:

  • Bacterial protein synthesis is a target for antibiotics.
  • Chloramphenicol is a known inhibitor of bacterial protein synthesis.

Purpose of the Study:

  • To elucidate the precise mechanism by which chloramphenicol inhibits bacterial protein synthesis.
  • To investigate the effect of chloramphenicol on the peptidyl transferase reaction.

Main Methods:

  • Studied the kinetics of puromycin-induced peptide release from transfer ribonucleic acid (tRNA) using Escherichia coli ribosomes.
  • Radioactively labeled nascent peptides on ribosomes in vivo.
  • Assessed peptide release in the presence and absence of chloramphenicol, supernatant fraction, and guanosine triphosphate (GTP).

Main Results:

  • Chloramphenicol inhibited puromycin-induced peptide release by only 50%, indicating partial inhibition of the peptidyl transferase reaction.
  • Supernatant fraction and GTP increased peptide release, which was fully inhibited by chloramphenicol.
  • Peptidyl chains on chloramphenicol-inhibited ribosomes showed reduced reactivity with puromycin, becoming less sensitive after preincubation with GTP and supernatant.

Conclusions:

  • Chloramphenicol does not directly inhibit the peptidyl transferase reaction.
  • The antibiotic likely interferes with a step in the peptide synthesis cycle that precedes the peptidyl transferase reaction.

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