Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors: H(+)-gated Cl(-) channels and Cl(-)/H(+) antiporters. Transmembrane H(+) movement is an essential feature of both types of CLC. X-ray crystal structures of CLC antiporters show the Cl(-) ion pathway through these proteins, but the H(+) pathway is known only inferentially by two conserved glutamate residues that act as way-stations for H(+) in its path through the protein. The extracellular-facing H(+) transfer glutamate becomes directly exposed to aqueous solution during the transport cycle, but the intracellular glutamate E203, Glu(in), is buried within the protein. Two regions, denoted "polar" and "interfacial," at the intracellular surfa...
<p>(a) CLC-ec1 (PDB #1OTS) is shown in surface view, with subunits of the homodimer differently colo...
Members of the CLC protein family of Cl− channels and transporters display the remarkable ability to...
The ClC family of anion channels mediates the efficient, selective permeation of Cl− across the biol...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
AbstractA fundamental question concerning the ClC Cl−/H+ antiporters is the nature of their proton t...
Many proteins of the CLC gene family are Cl(-) channels, whereas others, like the bacterial ecClC-1 ...
AbstractClC chloride channels and transporters play major roles in cellular excitability, epithelial...
The ClC family of transmembrane proteins functions throughout nature to control the transport of Cl<...
AbstractThe chloride channel (CLC) family is distinctive in that some members are Cl− ion channels a...
Many proteins of the CLC gene family are Cl(-) channels, whereas others, like the bacterial ecClC-1 ...
AbstractUsing a reactive molecular dynamics simulation methodology, the free energy barrier for wate...
Fluoride/proton antiporters of the CLC| family combat F| toxicity in bacteria by exporting this hali...
Ion channels have historically been viewed as distinct from secondary active transporters. However, ...
AbstractThe ClC family of anion channels mediates the efficient, selective permeation of Cl− across ...
AbstractSeveral prokaryotic ClC proteins have been demonstrated to function as exchangers that trans...
<p>(a) CLC-ec1 (PDB #1OTS) is shown in surface view, with subunits of the homodimer differently colo...
Members of the CLC protein family of Cl− channels and transporters display the remarkable ability to...
The ClC family of anion channels mediates the efficient, selective permeation of Cl− across the biol...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
AbstractA fundamental question concerning the ClC Cl−/H+ antiporters is the nature of their proton t...
Many proteins of the CLC gene family are Cl(-) channels, whereas others, like the bacterial ecClC-1 ...
AbstractClC chloride channels and transporters play major roles in cellular excitability, epithelial...
The ClC family of transmembrane proteins functions throughout nature to control the transport of Cl<...
AbstractThe chloride channel (CLC) family is distinctive in that some members are Cl− ion channels a...
Many proteins of the CLC gene family are Cl(-) channels, whereas others, like the bacterial ecClC-1 ...
AbstractUsing a reactive molecular dynamics simulation methodology, the free energy barrier for wate...
Fluoride/proton antiporters of the CLC| family combat F| toxicity in bacteria by exporting this hali...
Ion channels have historically been viewed as distinct from secondary active transporters. However, ...
AbstractThe ClC family of anion channels mediates the efficient, selective permeation of Cl− across ...
AbstractSeveral prokaryotic ClC proteins have been demonstrated to function as exchangers that trans...
<p>(a) CLC-ec1 (PDB #1OTS) is shown in surface view, with subunits of the homodimer differently colo...
Members of the CLC protein family of Cl− channels and transporters display the remarkable ability to...
The ClC family of anion channels mediates the efficient, selective permeation of Cl− across the biol...