Gating Competence of Constitutively Open CLC-0 Mutants Revealed by the Interaction with a Small Organic Inhibitor
Open Access
- 11 August 2003
- journal article
- Published by Rockefeller University Press in The Journal of general physiology
- Vol. 122 (3) , 295-306
- https://doi.org/10.1085/jgp.200308784
Abstract
Opening of CLC chloride channels is coupled to the translocation of the permeant anion. From the recent structure determination of bacterial CLC proteins in the closed and open configuration, a glutamate residue was hypothesized to form part of the Cl−-sensitive gate. The negatively charged side-chain of the glutamate was suggested to occlude the permeation pathway in the closed state, while opening of a single protopore of the double-pore channel would reflect mainly a movement of this side-chain toward the extracellular pore vestibule, with little rearrangement of the rest of the channel. Here we show that mutating this critical residue (Glu166) in the prototype Torpedo CLC-0 to alanine, serine, or lysine leads to constitutively open channels, whereas a mutation to aspartate strongly slowed down opening. Furthermore, we investigated the interaction of the small organic channel blocker p-chlorophenoxy-acetic acid (CPA) with the mutants E166A and E166S. Both mutants were strongly inhibited by CPA at negative voltages with a >200-fold larger affinity than for wild-type CLC-0 (apparent KD at −140 mV ∼4 μM). A three-state linear model with an open state, a low-affinity and a high-affinity CPA-bound state can quantitatively describe steady-state and kinetic properties of the CPA block. The parameters of the model and additional mutagenesis suggest that the high-affinity CPA-bound state is similar to the closed configuration of the protopore gate of wild-type CLC-0. In the E166A mutant the glutamate side chain that occludes the permeation pathway is absent. Thus, if gating consists only in movement of this side-chain the mutant E166A should not be able to assume a closed conformation. It may thus be that fast gating in CLC-0 is more complex than anticipated from the bacterial structures.Keywords
This publication has 32 references indexed in Scilit:
- Conformational Changes in the Pore of CLC-0The Journal of general physiology, 2003
- X-ray structure of a voltage-dependent K+ channelNature, 2003
- Gating the Selectivity Filter in ClC Chloride ChannelsScience, 2003
- Mechanisms of block of muscle type CLC chloride channels (Review)Molecular Membrane Biology, 2002
- Mechanism of Block of Single Protopores of the Torpedo Chloride Channel Clc-0 by 2-(p-Chlorophenoxybutyric) Acid (Cpb)The Journal of general physiology, 2001
- High-Level Expression, Functional Reconstitution, and Quaternary Structure of a Prokaryotic Clc-Type Chloride ChannelThe Journal of general physiology, 1999
- Two physically distinct pores in the dimeric CIC-0 chloride channelNature, 1996
- Homodimeric architecture of a CIC-type chloride ion channelNature, 1996
- Gating of the voltage-dependent chloride channel CIC-0 by the permeant anionNature, 1995
- Single chloride channels from Torpedo electroplax. Activation by protons.The Journal of general physiology, 1983