A single point mutation in the pore region of the epithelial Na + channel changes ion selectivity by modifying molecular sieving
Open Access
- 30 March 1999
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 96 (7) , 4170-4175
- https://doi.org/10.1073/pnas.96.7.4170
Abstract
The epithelial Na+ channel (ENaC) belongs to a new class of channel proteins called the ENaC/DEG superfamily involved in epithelial Na+ transport, mechanotransduction, and neurotransmission. The role of ENaC in Na+ homeostasis and in the control of blood pressure has been demonstrated recently by the identification of mutations in ENaC β and γ subunits causing hypertension. The function of ENaC in Na+ reabsorption depends critically on its ability to discriminate between Na+ and other ions like K+ or Ca2+. ENaC is virtually impermeant to K+ ions, and the molecular basis for its high ionic selectivity is largely unknown. We have identified a conserved Ser residue in the second transmembrane domain of the ENaC α subunit (αS589), which when mutated allows larger ions such as K+, Rb+, Cs+, and divalent cations to pass through the channel. The relative ion permeability of each of the αS589 mutants is related inversely to the ionic radius of the permeant ion, indicating that αS589 mutations increase the molecular cutoff of the channel by modifying the pore geometry at the selectivity filter. Proper geometry of the pore is required to tightly accommodate Na+ and Li+ ions and to exclude larger cations. We provide evidence that ENaC discriminates between cations mainly on the basis of their size and the energy of dehydration.Keywords
This publication has 18 references indexed in Scilit:
- The Structure of the Potassium Channel: Molecular Basis of K + Conduction and SelectivityScience, 1998
- MOLECULAR MODELING OF MECHANOTRANSDUCTION IN THE NEMATODE CAENORHABDITIS ELEGANSAnnual Review of Physiology, 1997
- Calcium dependence and distribution of calcium‐activated chloride channels in Xenopus oocytesThe Journal of Physiology, 1997
- Identification of Amino Acid Residues in the α, β, and γ Subunits of the Epithelial Sodium Channel (ENaC) Involved in Amiloride Block and Ion PermeationThe Journal of general physiology, 1997
- Cloning of the amiloride-sensitive FMRFamide peptide-gated sodium channelNature, 1995
- Calcium channel characteristics conferred on the sodium channel by single mutationsNature, 1992
- Epithelial Na Channels: The Nature of the Conducting PoreKidney and Blood Pressure Research, 1990
- Interactions of amiloride and other blocking cations with the apical Na channel in the toad urinary bladderThe Journal of Membrane Biology, 1985
- Voltage-dependent block by amiloride and other monovalent cations of apical Na channels in the toad urinary bladderThe Journal of Membrane Biology, 1984
- The permeability of the endplate channel to organic cations in frog muscle.The Journal of general physiology, 1980