Dexamethasone negatively regulates phenobarbitone-activated transcription but synergistically enhances cytoplasmic levels of cytochrome P-450b/e messenger RNA
Dexamethasone has a potentiating effect on phenobarbitone mediated induction of cytochrome P-450b + e mRNAs in adult rat liver. However, the glucocorticoid inhibits phenobarbitone-activated transcription of cytochrome P-450b + e mRNAs by 60-70%. This inhibitory effect is evident in run-off transcrip...
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Veröffentlicht in: | The Journal of biological chemistry 1990-04, Vol.265 (10), p.5617-5622 |
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Sprache: | eng |
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Zusammenfassung: | Dexamethasone has a potentiating effect on phenobarbitone mediated induction of cytochrome P-450b + e mRNAs in adult rat liver.
However, the glucocorticoid inhibits phenobarbitone-activated transcription of cytochrome P-450b + e mRNAs by 60-70%. This
inhibitory effect is evident in run-off transcription of the endogenous genes as well as in the transcription of an added
cloned gene fragment. Dexamethasone inhibits the phenobarbitone-mediated increase in the binding of a transcription factor(s)
to the upstream region of the gene as evidenced by gel retardation and Southwestern blot analysis. The glucocorticoid does
not stabilize the phenobarbitone-induced polyribosomal cytochrome P-450b + e mRNAs but appears to stabilize the nuclear transcripts.
It is proposed that a negative element may mediate the action of dexamethasone at the level of nuclear transcription and stabilization
of the nuclear transcript may account for the potentiating effect of the glucocorticoid on phenobarbitone-mediated increase
in cytochrome P-450b + e mRNAs in the cytoplasm of the adult rat liver. However, the cytochrome P-450b protein levels are
slightly lower in phenobarbitone + dexamethasone treatment than in phenobarbitone-treated liver microsomes. |
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ISSN: | 0021-9258 1083-351X |
DOI: | 10.1016/S0021-9258(19)39406-2 |