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PMID: 8661780 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Association of ClC-3 channel with Cl- transport by human nonpigmented ciliary epithelial cells.

The Journal of membrane biology ·Vol. 150 ·No. 2 ·1996-03-00 ·Pages 197-208

Coca-Prados M, Sánchez-Torres J, Peterson-Yantorno K, Civan MM

Abstract

Electrophysiologic and volumetric evidence link the swelling-activated Cl- channels [gCl(Vol)] of nonpigmented ciliary epithelial (NPE) cells with the Cl(-)-channel/Cl(-)-channel regulator protein pICln. However, inhibitors (verapamil and dideoxyforskolin) of another Cl- channel/regulator (MDR1) have been found to inhibit the volume-activated transport response [the regulatory volume decrease (RVD)] of bovine NPE cells. We have addressed the possible molecular basis for the NPE Cl- channels by volumetric measurements of ODM human NPE cells in hypotonic and isotonic test solutions, and by polymerase chain reaction (PCR) cloning and Northern analyses of the same cells. Verapamil and dideoxyforskolin did inhibit the RVD. However, at a concentration (100 microM) which blocks > 90% of the MDR1-associated Cl- currents, forskolin had no effect on the volume-activated Cl- channels or on the inhibition of those channels by protein kinase C. High concentrations of ATP (3.5 and 10 mM) and niflumic acid (IC50 approximately 200 microM) also block [gCl(Vol)]. The RVD is inhibited by 9-phenylanthranilic acid (DPC) and 5-nitro-2-(3-phenylpropylamino)-benzoate (NPPB), unaffected by anthracene-9-carboxylic acid (9-AC), and stimulated by ionomycin. The Cl(-)-channel blockers NPPB, niflumic acid, DPC and 9-AC, and the Ca2(+)-ionophore ionomycin had qualitatively similar effects on the rate of staurosporine-activated isotonic cell shrink-age. These results support the concept that the volume-sensitive protein pICln regulates the Cl- channels, and that the same conduits subserve volume- and staurosporine-activated Cl- release. Of the cloned and sequenced Cl- channels, ClC-3 uniquely conforms to the stationary currents and PKC sensitivity of the NPE Cl- channels. PCR amplifications of human cDNA libraries from ciliary body, NPE cells and retina with primers based on human ClC-3 and ClC-4 cDNA, and Northern analyses using the products generated indicated that ciliary epithelial cells express transcripts for ClC-3 (but not ClC-4). We suggest that ClC-3 provides the same conduit for both volume-activated and isotonically staurosporine-activated Cl- channels of human nonpigmented ciliary epithelial cells.

MeSH Terms
Alkaloids/pharmacology Animals Base Sequence Biological Transport Cattle Cell Line Chloride Channels/antagonists & inhibitors,drug effects,genetics,metabolism Chlorides/metabolism Ciliary Body/cytology,metabolism DNA Primers Epithelial Cells Epithelium/metabolism Gene Expression Humans Molecular Sequence Data Nucleotides/pharmacology Osmotic Pressure Polymerase Chain Reaction Protein Kinase C/metabolism RNA, Messenger/biosynthesis Retina/metabolism Staurosporine
Chemicals
Alkaloids Chloride Channels Chlorides DNA Primers Nucleotides RNA, Messenger Protein Kinase C Staurosporine
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Coca-Prados M
Department of Ophthalmology and Visual Science, Yale University School of Medicine, New Haven, CT, USA.
Sánchez-Torres J
Peterson-Yantorno K
Civan M M
Article Info
Journal
The Journal of membrane biology
Abbr.
J Membr Biol
ISSN
0022-2631
Published
1996-03-00
Pages
197-208
Language
English
Region
United States
NLM ID
0211301
Subset
IM
Grants
NEI NIH HHS · EY00785 · United States
NEI NIH HHS · EY08343 · United States
NEI NIH HHS · EY08672 · United States
Databases
GENBANK
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