Transforming growth factor-beta inhibits phosphate transport in renal epithelial cells

Law, F.; Rizzoli, R.; Bonjour, J.P.

American Journal of Physiology 264(4 Pt 2): F623-F628

1993


ISSN/ISBN: 0002-9513
PMID: 8476075
Document Number: 421061
The effect(s) of transforming growth factor-beta (TGF-beta) on P-i transport was investigated in confluent opossum kidney (OK) epithelial cells. TGF-beta induced a time- and concentration-dependent decrease in the initial rate of sodium-dependent P-i, but not alanine, transport. This selective inhibitory effect on P-i transport was largely reversible and was not associated with a rise in adenosine 3',5'-cyclic monophosphate production. The reduction in P-i uptake was also independent of changes in extracellular calcium concentrations and prostaglandin synthesis. TGF-beta-mediated P-i transport inhibition appeared to involve neither pertussis toxin-sensitive G protein(s) nor augmented protein kinase C activity. However, the probable role of a serine/threonine protein kinase in signal transduction was supported by the considerable attenuation of TGF-beta effect by H-7. Furthermore, the TGF-beta-induced P-i transport reduction was blunted by cycloheximide and abolished by actinomycin D. In conclusion, TGF-beta selectively inhibits the activity of the sodium-dependent P-i transport system present in the apical membrane of renal epithelial cells. This action appears to be exerted via an unprecedented inhibitory pathway that might involve a serine/threonine protein kinase and alterations in the transcriptional and translational processes.

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