Over 60 mutations of SCN4A encoding the NaV1.4 sodium channel of skeletal muscle have been identified in patients with myotonia, periodic paralysis, myasthenia, or congenital myopathy. Most mutations are missense with gain-of-function defects that cause susceptibility to myotonia or periodic paralysis. Loss-of-function from enhanced inactivation or null alleles is rare and has been associated with myasthenia and congenital myopathy, while a mix of loss and gain of function changes has an uncertain relation to hypokalaemic periodic paralysis. To better define the functional consequences for a loss-of-function, we generated NaV1.4 null mice by deletion of exon 12. Heterozygous null mice have latent myasthenia and a right shift of the force-st...
Several heritable forms of myotonia and hyperkalemic periodic paralysis (HyperPP) are caused by miss...
Sodium channel myotonia is a form of muscle channelopathy due to mutations that affect the Nav1.4 ch...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
ObjectiveTo identify the genetic and physiologic basis for recessive myasthenic congenital myopathy ...
Mutations in the skeletal muscle channel (SCN4A), encoding the Nav1.4 voltage-gated sodium channel, ...
Mutations in the skeletal muscle channel (SCN4A), encoding the Nav1.4 voltage-gated sodium channel, ...
ObjectiveTo describe the unique phenotype and genetic findings in a 57-year-old female with a rare f...
The voltage-gated sodium channel Nav1.4 is a major actor in the excitability of skeletal myofibers, ...
OBJECTIVE: To identify the genetic and physiologic basis for recessive myasthenic congenital myopath...
BACKGROUND: Mutations in SCN4A may lead to myotonia. METHODS: Presentation of a large family with my...
Dominant gain-of-function mutations in SCN4A, which encodes the alpha-subunit of the voltage-gated s...
AbstractOver 20 different missense mutations in the α subunit of the adult skeletal muscle Na channe...
Spectrum of sodium channel disturbances in the nondystrophic myotonias and periodic paralyses. Sever...
Missense mutations in the skeletal muscle Na+ channel alpha subunit occur in several heritable forms...
Five inherited human disorders affecting skeletal muscle contraction have been traced to mutations i...
Several heritable forms of myotonia and hyperkalemic periodic paralysis (HyperPP) are caused by miss...
Sodium channel myotonia is a form of muscle channelopathy due to mutations that affect the Nav1.4 ch...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
ObjectiveTo identify the genetic and physiologic basis for recessive myasthenic congenital myopathy ...
Mutations in the skeletal muscle channel (SCN4A), encoding the Nav1.4 voltage-gated sodium channel, ...
Mutations in the skeletal muscle channel (SCN4A), encoding the Nav1.4 voltage-gated sodium channel, ...
ObjectiveTo describe the unique phenotype and genetic findings in a 57-year-old female with a rare f...
The voltage-gated sodium channel Nav1.4 is a major actor in the excitability of skeletal myofibers, ...
OBJECTIVE: To identify the genetic and physiologic basis for recessive myasthenic congenital myopath...
BACKGROUND: Mutations in SCN4A may lead to myotonia. METHODS: Presentation of a large family with my...
Dominant gain-of-function mutations in SCN4A, which encodes the alpha-subunit of the voltage-gated s...
AbstractOver 20 different missense mutations in the α subunit of the adult skeletal muscle Na channe...
Spectrum of sodium channel disturbances in the nondystrophic myotonias and periodic paralyses. Sever...
Missense mutations in the skeletal muscle Na+ channel alpha subunit occur in several heritable forms...
Five inherited human disorders affecting skeletal muscle contraction have been traced to mutations i...
Several heritable forms of myotonia and hyperkalemic periodic paralysis (HyperPP) are caused by miss...
Sodium channel myotonia is a form of muscle channelopathy due to mutations that affect the Nav1.4 ch...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...