K+-induced HSP-72 expression is mediated via rapid Ca2+ influx in renal epithelial cells

Citation
O. Eickelberg et al., K+-induced HSP-72 expression is mediated via rapid Ca2+ influx in renal epithelial cells, AM J P-REN, 281(2), 2001, pp. F280-F287
Citations number
47
Categorie Soggetti
da verificare
Journal title
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY
ISSN journal
03636127 → ACNP
Volume
281
Issue
2
Year of publication
2001
Pages
F280 - F287
Database
ISI
SICI code
0363-6127(200108)281:2<F280:KHEIMV>2.0.ZU;2-Z
Abstract
Pathophysiological stimuli, including hypoxia, lead to K+ efflux from the i ntracellular lumen to the extracellular space, thereby increasing local tis sue K+ concentrations and depolarizing resident cells. In this study, we in vestigated the effects of increased extracellular K+ concentrations ([K+](e )) on heat shock protein (HSP) expression in the porcine proximal tubule ep ithelial cell line LLC-PK1. We analyzed HSP-25, HSP-72, HSC-73, and HSP-90 protein expression by Western blot analyses and HSP-72 promoter activity by luciferase reporter gene assays using the proximal 1,440 bp of the HSP-72 promoter. Elevating [K+](e) from 20 to 50 mM increased HSP-72 protein expre ssion and promoter activity but did not affect HSP-25, HSC-73, or HSP-90 le vels. Addition of identical concentrations of sodium chloride did not incre ase HSP-72 expression to a similar amount. The Ca2+ channel blocker diltiaz em and the Ca2+-specific chelator EGTA-AM abolished high [K+](e)-induced HS P-72 expression by 69.7 and 75.2%, respectively, indicating that the transc riptional induction of HSP-72 involves Ca2+ influx. As measured by confocal microscopy using the Ca2+ dye fluo 3-AM, we also observed a rapid increase of intracellular Ca2+ concentration as early as 30 s after placing LLC-PK1 cells in high [K+](e). We further analyzed whether Ca2+ influx was necessa ry for induction of HSP-72 expression by high [K+](e) using Ca2+-free mediu m. Here, induction of HSP-72 in response to high [K+](e) was completely abo lished. Our data thus demonstrate activation of a protective cellular respo nse to ionic stress, e.g., elevated K+ concentrations, by specifically incr easing protein levels of HSP-72.