Translational Step Inhibited in vivo by Aflatoxin B1 in Rat‐Liver Polysomes
- 28 June 1975
- journal article
- Published by Wiley in European Journal of Biochemistry
- Vol. 54 (2) , 329-340
- https://doi.org/10.1111/j.1432-1033.1975.tb04143.x
Abstract
Aflatoxin B1 strongly inhibits protein synthesis in rat liver cells. We previously demonstrated that this inhibition could be divided into two steps: up to 5 h aflatoxin blocks protein synthesis directly and specifically at the polysome level; beyond 7 h protein synthesis inhibition appears chiefly as a consequence of transcription impairment due to drug action. This paper confirms the foregoing results and represents an attempt to localize the translational step inhibited in vivo by aflatoxin B1. We used the simulation study developed by Li, Kisilevsky, Wasan and Hammond, 1972 (Biochim. Biophys. Acta, 272, 451-462) to determine precisely the site inhibited in vivo after drug intoxication. This analysis is based on two parameters: the kinetics of polysome labeling to follow the nascent peptide synthesis, and the kinetics of supernatant labeling to follow the completed protein synthesis. Up to 5 h after dosing, aflatoxin specifically inhibits the elongation and/or termination steps during protein synthesis; after longer periods of time inhibition occurs essentially at the initiation step. When the intracellular concentration of aflatoxin is too high, particularly 2 h after dosing, each step of protein synthesis is blocked. Polypeptide synthesis by the postmitochondrial supernatants isolated from aflatoxin-treated animals is impaired in the same proportion as protein synthesis in vivo. The damage caused by aflatoxin is mostly observed on microsomes. However, purified polysomes isolated from aflatoxin-treated rats synthesize proteins in vitro to the same extent as those from controls. These results suggest that aflatoxin metabolite(s) are bound to polysomes with noncovalent bonds. These active metabolites are probably lost during polysome isolation procedures. Finally, relationships between protein metabolism and aflatoxin carcinogenesis are discussed.Keywords
This publication has 38 references indexed in Scilit:
- Induction and mutagenesis of prophage λ in Escherichiacoli K12 by metabolites of aflatoxin B1Mutation Research - Fundamental and Molecular Mechanisms of Mutagenesis, 1975
- Chemical evidence for the formation of a reactive aflatoxin B1 metabolite, by hamster liver microsomesFEBS Letters, 1973
- Protein synthesis in a postmitochondrial supernatant system from rat liver. An effect of diabetes at the level of peptide chain initiationFEBS Letters, 1973
- Cycloheximide, an inhibitor of peptide chain termination or release in liver in vivo and in vitroBiochemical and Biophysical Research Communications, 1971
- Regulation of protein synthesis in mammalian cellsJournal of Molecular Biology, 1970
- Ribosomes in rat liver: An estimate of the percentage of free and membrane-bound ribosomes interacting with messenger RNA in vivoJournal of Molecular Biology, 1967
- Effects of cycloheximide on polyribosome function in reticulocytesJournal of Molecular Biology, 1967
- Acute effects of aflatoxin B1 on liver composition and metabolism in the rat and ducklingToxicology and Applied Pharmacology, 1966
- Binding of transfer ribonucleic acid to ribosomes engaged in protein synthesis: Number and properties of ribosomal binding sitesJournal of Molecular Biology, 1965
- Effect of cycloheximide on ribosomal aggregates engaged in protein synthesis in vitroBiochimica et Biophysica Acta (BBA) - Specialized Section on Nucleic Acids and Related Subjects, 1964