Molecular genetics of ion channel diseases. Many physiological processes depend upon the proper functioning of plasma membrane ion channels. This is most apparent in absorptive and secretory epithelia, and in electrically excitable tissues such as nerve and muscle. Disturbances in the operation of ion channels in these settings can alter normal physiology and cause disease. This review illustrates the use of molecular genetics in identifying hereditary diseases caused by mutations in genes which encode various skeletal muscle ion channels. Recent advances in the discovery of genetic mutations in the skeletal muscle voltage-gated sodium channel in certain forms of periodic paralysis, mutations in the skeletal muscle chloride channel gene in ...
Introduction: Skeletal muscle channelopathies are rare inherited conditions that cause significant m...
The skeletal muscle fibre membrane plays a major role in muscle contraction by generating and propag...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...
Molecular genetics of ion channel diseases. Many physiological processes depend upon the proper func...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
Skeletal muscle ion channelopathies (SMICs) are a large heterogeneous group of rare genetic disorder...
Familial disorders of skeletal muscle excitability were initially described early in the last centur...
Hereditary muscle channelopathies are caused by dominant mutations in the genes encoding for subunit...
During the past decade, mutations in several ion-channel genes have been shown to cause inherited ne...
In the human genome more than 400 genes encode ion channels, which are transmembrane proteins mediat...
Channelopathies are a heterogeneous group of genetic diseases in which a defective ion channel is re...
The cause of several familial muscular diseases have recently been linked to mutations within skelet...
Contains fulltext : 48299.pdf (publisher's version ) (Closed access)Channelopathie...
Ion channels are a large family of >400 related proteins representing >1% of our genetic endowment; ...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
Introduction: Skeletal muscle channelopathies are rare inherited conditions that cause significant m...
The skeletal muscle fibre membrane plays a major role in muscle contraction by generating and propag...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...
Molecular genetics of ion channel diseases. Many physiological processes depend upon the proper func...
Ion channels are transmembrane proteins that allow ions to flow in or out of the cell. Sodium and po...
Skeletal muscle ion channelopathies (SMICs) are a large heterogeneous group of rare genetic disorder...
Familial disorders of skeletal muscle excitability were initially described early in the last centur...
Hereditary muscle channelopathies are caused by dominant mutations in the genes encoding for subunit...
During the past decade, mutations in several ion-channel genes have been shown to cause inherited ne...
In the human genome more than 400 genes encode ion channels, which are transmembrane proteins mediat...
Channelopathies are a heterogeneous group of genetic diseases in which a defective ion channel is re...
The cause of several familial muscular diseases have recently been linked to mutations within skelet...
Contains fulltext : 48299.pdf (publisher's version ) (Closed access)Channelopathie...
Ion channels are a large family of >400 related proteins representing >1% of our genetic endowment; ...
Molecular mechanisms of ion conduction in ClC-type chloride channels: Lessons from disease-causing m...
Introduction: Skeletal muscle channelopathies are rare inherited conditions that cause significant m...
The skeletal muscle fibre membrane plays a major role in muscle contraction by generating and propag...
This thesis investigates the genetic and molecular aspects of the skeletal muscle channelopathies, i...