Translational regulation of Na-K-ATPase subunit mRNAs by glucocorticoids

Citation
P. Devarajan et Ej. Benz, Translational regulation of Na-K-ATPase subunit mRNAs by glucocorticoids, AM J P-REN, 279(6), 2000, pp. F1132-F1138
Citations number
45
Categorie Soggetti
da verificare
Journal title
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY
ISSN journal
03636127 → ACNP
Volume
279
Issue
6
Year of publication
2000
Pages
F1132 - F1138
Database
ISI
SICI code
0363-6127(200012)279:6<F1132:TRONSM>2.0.ZU;2-5
Abstract
Glucocorticoids (GC) regulate Na-K-ATPase-subunit mRNA transcription. Howev er, GC-induced increases in Na-K-ATPase activity are not always paralleled by changes in subunit mRNA abundance. We therefore examined posttranscripti onal mechanisms of subunit gene regulation by GC. cDNA-derived mRNAs encodi ng alpha1-, alpha3-, and beta1-subunits were tested for stability and trans lation efficiency in a cell-free lysate, in the presence of hydrocortisone (HC) or dexamethasone (Dex). No effect of HC on subunit mRNA stability was noted. Translation efficiency of alpha1- and alpha3- mRNAs, but not of beta 1-mRNA, was significantly increased by HC and Dex. Deletion of the 5' untra nslated region (5'UT) of alpha1- mRNA abolished this effect. Translation of a chimeric beta1-mRNA, constructed by transposing the 5'UT of alpha1 onto the coding region of beta1, was enhanced by HC. Transposition of a putative steroid-modulatory element conserved in the 5'UT of all alpha isoforms (AC AGGACCC) onto the coding region of beta1-mRNA rendered it responsive to HC. A synthetic primer containing the ACAGGACCC sequence abolished the effect of HC on alpha1- and chimeric beta1-mRNAs. Our results indicate that GC can directly enhance Na-K-ATPase translation in vitro in a subunit-specific ma nner, via a putative GC-modulatory element situated in a predicted loop str ucture within the 5'UT of alpha -mRNAs.