Related Experiment Videos
Diphtheria toxin prevents catecholamine desensitization of A431 human epidermoid carcinoma cells
Abstract:
We proposed that a rapidly turning over protein, induced in response to catecholamine stimulation of C6-2B rat astrocytoma cells, inhibits subsequent hormonal activation of adenylate cyclase. Studies upon which our hypothesis is based and confirmatory work in a variety of other cell lines and in vivo have utilized actinomycin D and cycloheximide to inhibit RNA and protein synthesis, respectively. These inhibitors, however, are not specific and have been reported also to interfere with other cellular processes. Diphtheria toxin is a specific protein synthesis inhibitor that acts only by ADP-ribosylating elongation factor 2, thus preventing peptide chain elongation. We thus tested whether diphtheria toxin could prevent catecholamine-induced desensitization in A431 human epidermoid carcinoma cells. The toxin inhibited protein synthesis and altered the time course of isoproterenol-stimulated cAMP accumulation as did the less-specific protein synthesis inhibitor cycloheximide. Cellular cAMP content after a 30-min exposure to isoproterenol was similar in control and in toxin-treated cells. However, after 4 hr of treatment with isoproterenol, toxin-treated cells accumulated up to six times more cAMP than controls. When cells or cell-free adenylate cyclase preparations were rechallenged with agonists, toxin-mediated inhibition of protein synthesis prevented desensitization. These results show that diphtheria toxin, a specific inhibitor of protein synthesis, can interfere with the normal physiological regulation of cAMP metabolism in eukaryotic cells and provide compelling evidence that catecholamine stimulation of adenylate cyclase promotes the synthesis of a protein(s) that, in some way, inhibits hormone-stimulated adenylate cyclase.
Insights
Catecholamine stimulation induces a protein that inhibits adenylate cyclase. Specific inhibition of protein synthesis using diphtheria toxin prevented this desensitization, confirming the protein
Area of Science:
- Cellular and Molecular Biology
- Biochemistry
- Pharmacology
Background:
- Catecholamine stimulation of cells can lead to desensitization of adenylate cyclase.
- Previous studies used non-specific inhibitors like actinomycin D and cycloheximide.
- These inhibitors lack specificity and can affect other cellular processes.
Purpose of the Study:
- To investigate the role of protein synthesis in catecholamine-induced adenylate cyclase desensitization.
- To determine if a specific protein synthesis inhibitor can prevent this desensitization.
- To provide evidence for a rapidly turning over protein mediating adenylate cyclase inhibition.
Main Methods:
- Utilized diphtheria toxin, a specific inhibitor of protein synthesis, on A431 human epidermoid carcinoma cells.
- Measured isoproterenol-stimulated cyclic adenosine monophosphate (cAMP) accumulation.
- Assessed desensitization by rechallenging cells and cell-free preparations with agonists.
Main Results:
- Diphtheria toxin specifically inhibited protein synthesis.
- Toxin-treated cells showed significantly higher cAMP accumulation after prolonged agonist exposure compared to controls.
- Inhibition of protein synthesis by diphtheria toxin prevented agonist-induced desensitization of adenylate cyclase.
Conclusions:
- Catecholamine stimulation promotes the synthesis of a protein that inhibits adenylate cyclase activity.
- Diphtheria toxin, a specific protein synthesis inhibitor, can interfere with cAMP metabolism regulation.
- These findings provide strong evidence for a protein-mediated mechanism in hormone-stimulated adenylate cyclase desensitization.