Chloride channels of intracellular organelles and their potential role in cystic fibrosis
Open Access
- 1 November 1992
- journal article
- review article
- Published by The Company of Biologists in Journal of Experimental Biology
- Vol. 172 (1) , 245-266
- https://doi.org/10.1242/jeb.172.1.245
Abstract
Chloride channels were previously purified from bovine kidney cortex membranes using a drug affinity column. Reconstitution of the purified proteins into artificial liposomes and planar bilayers yielded chloride channels. A 64× 10Mr protein, p64, identified as a component of this chloride channel, was used to generate antibodies which depleted solubilized kidney membranes of all chloride channel activity. This antibody has now been used to identify a clone, H2B, from a kidney cDNA library. Antibodies, affinity-purified against the fusion protein of H2B, also depleted solubilized kidney cortex from all chloride channel activity. The predicted amino acid sequence of p64 shows that it contains two and possibly four putative transmembrane domains and potential phosphorylation sites by protein kinases A and C. There was no significant homology to other protein (or DNA) sequences in the data base including other anion channels or the cystic fibrosis transmembrane conductance regulator. The protein is expressed in all cells tested and probably represents the chloride channel of intracellular organelles.Cystic fibrosis (CF) is associated with a defect in a cyclic-AMP-activated chloride channel in secretory epithelia which leads to decreased fluid secretion. In addition, many mucus glycoproteins show decreased sialylation but increased sulfation. We have recently shown that the pH of intracellular organelles is more alkaline in CF cells, an abnormality that is due to defective chloride conductance in the vesicle membranes. We postulate that the defect in the intracellular chloride channel, and hence the alkalization, could explain the glycosylation abnormalities since the pH optimum of Golgi sialyltransferase is acid while that of focusyl-and sulfotransferases is alkaline. Defects in sialyation of glycolipids might also generate receptors for Pseudomonas, which is known to colonize the respiratory tract of CF patients.Keywords
This publication has 102 references indexed in Scilit:
- Single chloride channels in endosomal vesicle preparations from rat kidney cortexThe Journal of Membrane Biology, 1989
- Anion channels in giant liposomes made of endoplasmic reticulum vesicles from rat exocrine pancreasThe Journal of Membrane Biology, 1988
- Chinese hamster ovary cell mutants with temperature-sensitive defects in endocytosis. I. Loss of function on shifting to the nonpermissive temperature.The Journal of cell biology, 1986
- Conversion of proinsulin to insulin occurs coordinately with acidification of maturing secretory vesicles.The Journal of cell biology, 1986
- Ganglioside biosynthesis in rat liverEuropean Journal of Biochemistry, 1986
- Receptor-Mediated Endocytosis: Concepts Emerging from the LDL Receptor SystemAnnual Review of Cell Biology, 1985
- Purification of VDAC (Voltage-dependent anion-selective channel) from rat liver mitochondriaThe Journal of Membrane Biology, 1983
- Solubilization and reconstitution of an anion-sensitive H+-ATPase from corn rootsThe Journal of Membrane Biology, 1983
- Ganglioside Biosynthesis in Rat LiverEuropean Journal of Biochemistry, 1981
- Ganglioside biosynthesis characterization of CMP-n-acetylneuraminic acid: Lactosylceramide sialyltransferase in golgi apparatus from rat liverBiochimica et Biophysica Acta (BBA) - Lipids and Lipid Metabolism, 1977