Inhibition of mammalian translation initiation by volatile anesthetics
Open Access
- 1 June 2006
- journal article
- Published by American Physiological Society in American Journal of Physiology-Endocrinology and Metabolism
- Vol. 290 (6), E1267-E1275
- https://doi.org/10.1152/ajpendo.00463.2005
Abstract
Volatile anesthetics are essential for modern medical practice, but sites and mechanisms of action for any of their numerous cellular effects remain largely unknown. Previous studies with yeast showed that volatile anesthetics induce nutrient-dependent inhibition of growth through mechanisms involving inhibition of mRNA translation. Studies herein show that the volatile anesthetic halothane inhibits protein synthesis in perfused rat liver at doses ranging from 2 to 6%. A marked disaggregation of polysomes occurs, indicating that inhibition of translation initiation plays a key role. Dose- and time-dependent alterations that decrease the function of a variety of translation initiation processes are observed. At 6% halothane, a rapid and persistent increase in phosphorylation of the α-subunit of eukaryotic translation initiation factor (eIF)2 occurs. This is accompanied by inhibition of activity of the guanine nucleotide exchange factor eIF2B that is responsible for GDP-GTP exchange on eIF2. At lower doses, neither eIF2α phosphorylation nor eIF2B activity is altered. After extended exposure to 6% halothane, alterations in two separate responses regulated by the target of rapamycin pathway occur: 1) redistribution of eIF4E from its translation-stimulatory association with eIF4G to its translation-inactive complex with eIF4E-binding protein-1; and 2) decreased phosphorylation of ribosomal protein S6 (rpS6) with a corresponding decrease in active forms of a kinase that phosphorylates rpS6 (p70S6K1). Changes in the association of eIF4E and eIF4G are observed only after extended exposure to low anesthetic doses. Thus dose- and time-dependent alterations in multiple processes permit liver cells to adapt translation to variable degrees and duration of stress imposed by anesthetic exposure.Keywords
This publication has 33 references indexed in Scilit:
- Acute Effects of Halothane and Enflurane on Drug Metabolism and Protein Synthesis in Isolated Rat HepatocytesActa Pharmacologica et Toxicologica, 2009
- Inhibition of Translation Initiation by Volatile Anesthetics Involves Nutrient-sensitive GCN-independent and -dependent Processes in YeastMolecular Biology of the Cell, 2005
- The impact of drugs used in anaesthesia on bacteriaEuropean Journal of Anaesthesiology, 1999
- Sevoflurane Is Biotransformed by Guinea Pig Liver Slices but Causes Minimal CytotoxicityAnesthesia & Analgesia, 1992
- Minimal Biotransformation and Toxicity of Desflurane in Guinea Pig Liver SlicesAnesthesia & Analgesia, 1991
- Isoflurane and Whole Body Leucine, Glucose, and Fatty Acid Metabolism in DogsAnesthesiology, 1990
- Halothane Decreases Albumin and Transferrin SynthesisAnesthesiology, 1988
- Effect of Volatile Anesthetics on Protein Synthesis and Secretion by Rat Hepatocyte SuspensionsDrug and Chemical Toxicology, 1986
- Additive Effects of Pentobarbital and Halothane to Inhibit Synthesis of Lung ProteinsAnesthesiology, 1982
- Halo thane Inhibition of RNA and Protein Synthesis of PHA-treated Human LymphocytesAnesthesiology, 1975