Chimeric Na+/H+ exchangers: an epithelial membrane-bound N-terminal domain requires an epithelial cytoplasmic C-terminal domain for regulation by protein kinases.
- 7 November 1995
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 92 (23) , 10723-10727
- https://doi.org/10.1073/pnas.92.23.10723
Abstract
All cloned members of the mammalian Na+/H+ exchanger gene family encode proteins that consist of two functionally distinct domains: a membrane-bound N terminus and a cytoplasmic C terminus, which are required for ion transport and regulation of transport, respectively. Despite their similarity in structure, three members of this family, designated NHE1, NHE2, and NHE3, exhibit different kinetic mechanisms in response to growth factors and protein kinases. For instance, growth factors stimulate NHE1 by a change in the affinity constant for intracellular H+, K'(Hi+), and regulate NHE2 and NHE3 by a change in Vmax. We have constructed chimeric Na+/H+ exchangers by exchanging the N and C termini among three cloned rabbit Na+/H+ exchangers (NHE1 to NHE3) to determine which domain is responsible for the above Vmax-vs.-K'(H(i)+) effect of the Na+/H+ isoforms. All of the chimeras had functional exchange activity and basal kinetic properties similar to those of wild-type exchangers. Studies with serum showed that the N terminus is responsible for the Vmax-vs.-K'(H(i)+) stimulation of the Na+/H+ exchanger isoforms. Moreover, phorbol 12-myristate 13-acetate and fibroblast growth factor altered Na+/H+ exchange only in chimeras that had an epithelial N-terminal domain matched with an epithelial C-terminal domain. Therefore, the protein kinase-induced regulation of Na+/H+ exchangers is mediated through a specific interaction between the N- and C-termini, whcih is restricted so that epithelial N- and epithelial N-and C-terminal portions of the exchangers are required for regulation.Keywords
This publication has 20 references indexed in Scilit:
- Na+/H+ exchange and growth factor-induced cytosolic pH changes. Role in cellular proliferationPublished by Elsevier ,2003
- Separate C-terminal Domains of the Epithelial Specific Brush Border Na+/H+ Exchanger Isoform NHE3 Are Involved in Stimulation and Inhibition by Protein Kinases/Growth FactorsJournal of Biological Chemistry, 1995
- Regions involved in the opening of CIC-2 chloride channel by voltage and cell volumeNature, 1992
- Cloning and sequencing of a rabbit cDNA encoding an intestinal and kidney-specific Na+/H+ exchanger isoform (NHE-3).1992
- Molecular cloning of putative members of the Na/H exchanger gene family. cDNA cloning, deduced amino acid sequence, and mRNA tissue expression of the rat Na/H exchanger NHE-1 and two structurally related proteins.Journal of Biological Chemistry, 1992
- The Na+/H+ antiporter cytoplasmic domain mediates growth factor signals and controls "H(+)-sensing".Proceedings of the National Academy of Sciences, 1992
- Alpha-thrombin, epidermal growth factor, and okadaic acid activate the Na+/H+ exchanger, NHE-1, by phosphorylating a set of common sites.1991
- Molecular cloning and expression of a cDNA encoding the rabbit ileal villus cell basolateral membrane Na+/H+ exchanger.1991
- Kinetics and regulation of a polarized Na(+)-H+ exchanger from Caco-2 cells, a human intestinal cell lineAmerican Journal of Physiology-Gastrointestinal and Liver Physiology, 1991
- Sodium and chloride transport across rabbit ileal brush border. I. Evidence for Na-H exchangeAmerican Journal of Physiology-Gastrointestinal and Liver Physiology, 1983