Mutations in the muscle chloride channel gene (CLCN1) cause myotonia congenita, an inherited condition characterized by muscle stiffness upon sudden forceful movement. We here studied the functional consequences of four disease-causing mutations that predict amino acid substitutions Q43R, S70L, Y137D and Q160H. Wild-type (WT) and mutant hClC-1 channels were heterologously expressed as YFP or CFP fusion protein in HEK293T cells and analyzed by whole-cell patch clamp and fluorescence recordings on individual cells. Q43R, Y137D and Q160H, but not S70L reduced macroscopic current amplitudes, but left channel gating and unitary current amplitudes unaffected. We developed a novel assay combining electrophysiological and fluorescence measurements ...
Autosomal dominant myotonia congenita and autosomal recessive generalized myotonia (GM) are genetic ...
Voltage-gated ClC chloride channels play important roles in cell volume regulation, control of muscl...
Myotonia congenita is an inherited disease that is characterized by impaired muscle relaxation after...
Myotonia congenita is a genetic condition that is caused by mutations in the muscle chloride channel...
Myotonia congenita is a hereditary muscle disorder caused by mutations in the human voltage-gated ch...
Myotonia congenita is a hereditary muscle disorder caused by mutations in the human voltage-gated ch...
Myotonia (muscle stiffness) is a symptom of several inherited diseases in humans and also in animals...
AbstractA point mutation (D136G) predicting the substitution of glycine for aspartate in position 13...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
Myotonia congenita is an inherited disease caused by loss-of-function mutations of the skeletal musc...
Myotonia congenita is an autosomal dominantly or recessively inherited muscle disorder causing impai...
Autosomal dominant myotonia congenita (Thomsen's disease) is caused by mutations in the muscle chlor...
KEY POINTS: Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congen...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
Myotonia congenita (MC) is caused by loss-of-function mutations of the muscle ClC-1 chloride channel...
Autosomal dominant myotonia congenita and autosomal recessive generalized myotonia (GM) are genetic ...
Voltage-gated ClC chloride channels play important roles in cell volume regulation, control of muscl...
Myotonia congenita is an inherited disease that is characterized by impaired muscle relaxation after...
Myotonia congenita is a genetic condition that is caused by mutations in the muscle chloride channel...
Myotonia congenita is a hereditary muscle disorder caused by mutations in the human voltage-gated ch...
Myotonia congenita is a hereditary muscle disorder caused by mutations in the human voltage-gated ch...
Myotonia (muscle stiffness) is a symptom of several inherited diseases in humans and also in animals...
AbstractA point mutation (D136G) predicting the substitution of glycine for aspartate in position 13...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
Myotonia congenita is an inherited disease caused by loss-of-function mutations of the skeletal musc...
Myotonia congenita is an autosomal dominantly or recessively inherited muscle disorder causing impai...
Autosomal dominant myotonia congenita (Thomsen's disease) is caused by mutations in the muscle chlor...
KEY POINTS: Loss-of-function mutations of the skeletal muscle ClC-1 channel cause myotonia congen...
Myotonia congenita (MC) is a genetic disease caused by mutations in the skeletal muscle chloride cha...
Myotonia congenita (MC) is caused by loss-of-function mutations of the muscle ClC-1 chloride channel...
Autosomal dominant myotonia congenita and autosomal recessive generalized myotonia (GM) are genetic ...
Voltage-gated ClC chloride channels play important roles in cell volume regulation, control of muscl...
Myotonia congenita is an inherited disease that is characterized by impaired muscle relaxation after...