AbstractClC chloride channels and transporters play major roles in cellular excitability, epithelial salt transport, volume, pH, and blood pressure regulation. One family member, ClC-ec1 from Escherichia coli, has been structurally resolved crystallographically and subjected to intensive mutagenetic, crystallographic, and electrophysiological studies. It functions as a Cl−/H+ antiporter, not a Cl− channel; however, the molecular mechanism for Cl−/H+ exchange is largely unknown. Using all-atom normal-mode analysis to explore possible mechanisms for this antiport, we propose that Cl−/H+ exchange involves a conformational cycle of alternating exposure of Cl− and H+ binding sites of both ClC pores to the two sides of the membrane. Both pores sw...
AbstractThe ClC family of anion channels mediates the efficient, selective permeation of Cl− across ...
The CLC proteins form a broad family of anion-selective transport proteins that includes both channe...
CLC channels mediate passive Cl- conduction, while CLC transporters mediate active Cl- transport cou...
AbstractClC chloride channels and transporters play major roles in cellular excitability, epithelial...
Ion channels have historically been viewed as distinct from secondary active transporters. However, ...
AbstractThe chloride channel (CLC) family is distinctive in that some members are Cl− ion channels a...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
CLC proteins are a large structurally defined family of Cl- ion channels and H+/Cl- antiporters with...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
CLC proteins transport chloride (Cl–) ions across cell membranes to control the electrical potential...
AbstractControlled chloride movement across membranes is essential for a variety of physiological pr...
The chloride channel (ClC) protein family comprises both chloride (Cl(-)) channels and chloride/prot...
CLC proteins are found in cells from prokaryotes to mammals and perform functions in plasma membrane...
The ClC family of transmembrane proteins functions throughout nature to control the transport of Cl<...
The CLC family of membrane proteins is a ubiquitously expressed class of proton and usually voltage-...
AbstractThe ClC family of anion channels mediates the efficient, selective permeation of Cl− across ...
The CLC proteins form a broad family of anion-selective transport proteins that includes both channe...
CLC channels mediate passive Cl- conduction, while CLC transporters mediate active Cl- transport cou...
AbstractClC chloride channels and transporters play major roles in cellular excitability, epithelial...
Ion channels have historically been viewed as distinct from secondary active transporters. However, ...
AbstractThe chloride channel (CLC) family is distinctive in that some members are Cl− ion channels a...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
CLC proteins are a large structurally defined family of Cl- ion channels and H+/Cl- antiporters with...
Chloride-transporting membrane proteins of the CLC family appear in two distinct mechanistic flavors...
CLC proteins transport chloride (Cl–) ions across cell membranes to control the electrical potential...
AbstractControlled chloride movement across membranes is essential for a variety of physiological pr...
The chloride channel (ClC) protein family comprises both chloride (Cl(-)) channels and chloride/prot...
CLC proteins are found in cells from prokaryotes to mammals and perform functions in plasma membrane...
The ClC family of transmembrane proteins functions throughout nature to control the transport of Cl<...
The CLC family of membrane proteins is a ubiquitously expressed class of proton and usually voltage-...
AbstractThe ClC family of anion channels mediates the efficient, selective permeation of Cl− across ...
The CLC proteins form a broad family of anion-selective transport proteins that includes both channe...
CLC channels mediate passive Cl- conduction, while CLC transporters mediate active Cl- transport cou...