Proton Sensing of CLC-0 Mutant E166D
Open Access
- 27 December 2005
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 127 (1) , 51-66
- https://doi.org/10.1085/jgp.200509340
Abstract
CLC Cl− channels are homodimers in which each subunit has a proper pore and a (fast) gate. An additional slow gate acts on both pores. A conserved glutamate (E166 in CLC-0) is a major determinant of gating in CLC-0 and is crucially involved in Cl−/H+ antiport of CLC-ec1, a CLC of known structure. We constructed tandem dimers with one wild-type (WT) and one mutant subunit (E166A or E166D) to show that these mutations of E166 specifically alter the fast gate of the pore to which they belong without effect on the fast gate of the neighboring pore. In addition both mutations activate the common slow gate. E166A pores have a large, voltage-independent open probability of the fast gate (popen), whereas popen of E166D pores is dramatically reduced. Similar to WT, popen of E166D was increased by lowering pHint. At negative voltages, E166D presents a persistent inward current that is blocked by p-chlorophenoxy-acetic acid (CPA) and increased at low pHext. The pHext dependence of the persistent current is analogous to a similar steady inward current in WT CLC-0. Surprisingly, however, the underlying unitary conductance of the persistent current in E166D is about an order of magnitude smaller than that of the transient deactivating inward Cl− current. Collectively, our data support the possibility that the mutated CLC-0 channel E166D can assume two distinct open states. Voltage-independent protonation of D166 from the outside favors a low conductance state, whereas protonation from the inside favors the high conductance state.Keywords
This publication has 36 references indexed in Scilit:
- FUNCTION OF CHLORIDE CHANNELS IN THE KIDNEYAnnual Review of Physiology, 2005
- Unique Structure and Function of Chloride Transporting CLC ProteinsIEEE Transactions on Nanobioscience, 2005
- Secondary active transport mediated by a prokaryotic homologue of ClC Cl- channelsNature, 2004
- Gating Competence of Constitutively Open CLC-0 Mutants Revealed by the Interaction with a Small Organic InhibitorThe Journal of general physiology, 2003
- Conformational Changes in the Pore of CLC-0The Journal of general physiology, 2003
- Gating the Selectivity Filter in ClC Chloride ChannelsScience, 2003
- Two physically distinct pores in the dimeric CIC-0 chloride channelNature, 1996
- Homodimeric architecture of a CIC-type chloride ion channelNature, 1996
- Stochastic properties of ion channel openings and bursts in a membrane patch that contains two channels: evidence concerning the number of channels present when a record containing only single openings is observedProceedings of the Royal Society of London. B. Biological Sciences, 1990
- A VOLTAGE‐DEPENDENT CHLORIDE CONDUCTANCE CHANNEL FROM TORPEDO ELECTROPLAX MEMBRANE*Annals of the New York Academy of Sciences, 1980