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Nitric oxide inhibits heterologous CFTR expression in polarized epithelial cells
T Jilling1, I Y Haddad, S H Cheng
1Department of Pediatrics, The Evanston Hospital, Northwestern University Medical School, Evanston, Illinois 60201, USA.
Abstract:
Nitric oxide (. NO) has been implicated in a wide range of autocrine and paracrine signaling mechanisms. Herein, we assessed the role of exogenous. NO in the modulation of heterologous gene expression in polarized kidney epithelial cells (LLC-PK(1)) that were stably transduced with a cDNA encoding human wild-type cystic fibrosis transmembrane conductance regulator (CFTR) under the control of a heavy metal-sensitive metallothionein promoter (LLC-PK(1)-WTCFTR). Exposure of these cells to 125 microM DETA NONOate at 37 degrees C for 24 h (a chemical. NO donor) diminished Zn(2+)-induced and uninduced CFTR protein levels by 43.3 +/- 5.1 and 34.4 +/- 17.1% from their corresponding control values, respectively. These changes did not occur if red blood cells, effective scavengers of. NO, were added to the medium. Exposure to. NO did not alter lactate dehydrogenase release in the medium or the extent of apoptosis. Coculturing LLC-PK(1)-WTCFTR cells with murine fibroblasts that were stably transduced with the human inducible. NO synthase cDNA gene also inhibited CFTR protein expression in a manner that was antagonized by 1 mM N(G)-monomethyl-L-arginine in the medium. Pretreatment of LLC-PK(1)-WTCFTR with ODQ, an inhibitor of guanylyl cyclase, did not affect the ability of. NO to inhibit heterologous CFTR expression; furthermore, 8-bromo-cGMP had no effect on heterologous CFTR expression. These data indicate that. NO impairs the heterologous expression of CFTR in epithelial cells at the protein level via cGMP-independent mechanisms.
Insights
Nitric oxide (NO) reduces cystic fibrosis transmembrane conductance regulator (CFTR) protein expression in kidney cells. This effect occurs independently of cyclic GMP signaling pathways.
Area of Science:
- Cell Biology
- Molecular Biology
- Physiology
Background:
- Nitric oxide (NO) is a signaling molecule involved in various cellular processes.
- Cystic fibrosis transmembrane conductance regulator (CFTR) is crucial for ion transport in epithelial cells.
Purpose of the Study:
- To investigate the effect of exogenous nitric oxide (NO) on heterologous gene expression of CFTR in kidney epithelial cells.
- To elucidate the signaling mechanisms underlying NO's modulation of CFTR expression.
Main Methods:
- LLC-PK(1) cells stably expressing human wild-type CFTR (LLC-PK(1)-WTCFTR) were treated with a chemical NO donor (DETA NONOate).
- NO's effect on CFTR protein levels was assessed with and without NO scavengers (red blood cells) and inhibitors (N(G)-monomethyl-L-arginine, ODQ).
- The role of cyclic GMP (cGMP) was evaluated using an inhibitor (ODQ) and a cGMP analog (8-bromo-cGMP).
Main Results:
- Exogenous NO significantly reduced both induced and uninduced CFTR protein levels in LLC-PK(1)-WTCFTR cells.
- NO's inhibitory effect on CFTR expression was confirmed using inducible NO synthase (iNOS) expressing cells and was blocked by NO scavengers and iNOS inhibitors.
- NO-induced inhibition of CFTR expression was independent of guanylyl cyclase and cGMP signaling pathways.
Conclusions:
- Nitric oxide impairs heterologous CFTR expression at the protein level in kidney epithelial cells.
- The mechanism of NO-mediated CFTR downregulation is independent of the cGMP signaling pathway.