Copyright © 2003 The Rockefeller University PressClC-1 is a dimeric, double-pored chloride channel that is present in skeletal muscle. Mutations of this channel can result in the condition myotonia, a muscle disorder involving increased muscle stiffness. It has been shown that the dominant form of myotonia often results from mutations that affect the so-called slow, or common, gating process of the ClC-1 channel. Mutations causing dominant myotonia are seen to cluster at the interface of the ClC-1 channel monomers. This study has investigated the role of the H, I, P, and Q helices, which lie on this interface, as well as the G helix, which is situated immediately behind the H and I helices, on ClC-1 gating. 11 mutant ClC-1 channels (T268M, ...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
AbstractAutosomal dominant myotonia congenita (Thomsen's disease) is caused by mutations in the musc...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congenita with variab...
KEY POINTS: Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congen...
Myotonia congenita is an inherited disease caused by loss-of-function mutations of the skeletal musc...
Myotonia congenita is a genetic condition that is caused by mutations in the muscle chloride channel...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
<div><p>Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chlo...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
The CLC-1 chloride channel, a member of the CLC-channel/transporter family, plays important roles fo...
The CLC-1 chloride channel, a member of the CLC-channel/transporter family, plays important roles fo...
The voltage-dependent ClC-1 chloride channel belongs to the CLC channel/transporter family. It is a ...
Voltage-gated ClC chloride channels play important roles in cell volume regulation, control of muscl...
Myotonia (muscle stiffness) is a symptom of several inherited diseases in humans and also in animals...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
AbstractAutosomal dominant myotonia congenita (Thomsen's disease) is caused by mutations in the musc...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...
Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congenita with variab...
KEY POINTS: Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congen...
Myotonia congenita is an inherited disease caused by loss-of-function mutations of the skeletal musc...
Myotonia congenita is a genetic condition that is caused by mutations in the muscle chloride channel...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
<div><p>Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chlo...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
The CLC-1 chloride channel, a member of the CLC-channel/transporter family, plays important roles fo...
The CLC-1 chloride channel, a member of the CLC-channel/transporter family, plays important roles fo...
The voltage-dependent ClC-1 chloride channel belongs to the CLC channel/transporter family. It is a ...
Voltage-gated ClC chloride channels play important roles in cell volume regulation, control of muscl...
Myotonia (muscle stiffness) is a symptom of several inherited diseases in humans and also in animals...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
AbstractAutosomal dominant myotonia congenita (Thomsen's disease) is caused by mutations in the musc...
ClC-1 protein channels facilitate rapid passage of chloride ions across cellular membranes, thereby ...