Novel Insights into the Pathomechanisms of Skeletal Muscle Channelopathies

被引:44
作者
Burge, James A. [1 ,2 ]
Hanna, Michael G. [1 ,2 ]
机构
[1] UCLH Fdn Trust, Natl Hosp Neurol & Neurosurg, London WC1N 3BG, England
[2] UCL MRC Ctr Neuromuscular Dis, UCL Inst Neurol, London WC1N 3BG, England
基金
英国医学研究理事会;
关键词
Channel; Channelopathy; Muscle; Myotonia; Periodic paralysis; Hyperkalemic; Hypokalemic; Andersen-Tawil; Chloride; Potassium; Sodium; Bistability; Electrophysiology; Skeletal; TRANSVERSE TUBULAR SYSTEM; CHARGE LOSS ACCOUNTS; VOLTAGE SENSOR; PERIODIC PARALYSIS; MUTATIONS; CHANNELS; CLC-1; DEPOLARIZATION; VARIABILITY; GENE;
D O I
10.1007/s11910-011-0238-3
中图分类号
R74 [神经病学与精神病学];
学科分类号
摘要
The nondystrophic myotonias and primary periodic paralyses are an important group of genetic muscle diseases characterized by dysfunction of ion channels that regulate membrane excitability. Clinical manifestations vary and include myotonia, hyperkalemic and hypokalemic periodic paralysis, progressive myopathy, and cardiac arrhythmias. The severity of myotonia ranges from severe neonatal presentation causing respiratory compromise through to mild later-onset disease. It remains unclear why the frequency of attacks of paralysis varies greatly or why many patients develop a severe permanent fixed myopathy. Recent detailed characterizations of human genetic mutations in voltage-gated muscle sodium (gene: SCN4A), chloride (gene: CLCN1), calcium (gene: CACNA1S), and inward rectifier potassium (genes: KCNJ2, KCNJ18) channels have resulted in new insights into disease mechanisms, clinical phenotypic variation, and therapeutic options.
引用
收藏
页码:62 / 69
页数:8
相关论文
共 51 条
[31]   Comparison of regulated passive membrane conductance in action potential-firing fast- and slow-twitch muscle [J].
Pedersen, Thomas Holm ;
Macdonald, William Alexander ;
de Paoli, Frank Vinzenco ;
Gurung, Iman Singh ;
Nielsen, Ole Baekgaard .
JOURNAL OF GENERAL PHYSIOLOGY, 2009, 134 (04) :323-337
[32]   Regulation of ClC-1 and KATP channels in action potential-firing fast-twitch muscle fibers [J].
Pedersen, Thomas Holm ;
de Paoli, Frank Vinzenco ;
Flatman, John A. ;
Nielsen, Ole Baekgaard .
JOURNAL OF GENERAL PHYSIOLOGY, 2009, 134 (04) :309-322
[33]   INa AND IKir ARE REDUCED IN TYPE 1 HYPOKALEMIC AND THYROTOXIC PERIODIC PARALYSIS [J].
Puwanant, Araya ;
Ruff, Robert L. .
MUSCLE & NERVE, 2010, 42 (03) :315-327
[34]   Skeletal muscle channelopathies: nondystrophic myotonias and periodic paralysis [J].
Rayan, Dipa L. Raja ;
Hanna, Michael G. .
CURRENT OPINION IN NEUROLOGY, 2010, 23 (05) :466-476
[35]   VOLTAGE SENSOR CHARGE LOSS ACCOUNTS FOR MOST CASES OF HYPOKALEMIC PERIODIC PARALYSIS [J].
Ruff, Robert L. .
NEUROLOGY, 2010, 74 (03) :269-269
[36]   Mutations in Potassium Channel Kir2.6 Cause Susceptibility to Thyrotoxic Hypokalemic Periodic Paralysis [J].
Ryan, Devon P. ;
da Silva, Magnus R. Dias ;
Soong, Tuck Wah ;
Fontaine, Bertrand ;
Donaldson, Matt R. ;
Kung, Annie W. C. ;
Jongjaroenprasert, Wallaya ;
Liang, Mui Cheng ;
Khoo, Daphne H. C. ;
Cheah, Jin Seng ;
Ho, Su Chin ;
Bernstein, Harold S. ;
Maciel, Rui M. B. ;
Brown, Robert H., Jr. ;
Ptacek, Louis J. .
CELL, 2010, 140 (01) :88-98
[37]  
Simkin D, 2011, J PHYSL IN PRESS
[38]   Ion permeation and block of the gating pore in the voltage sensor of NaV1.4 channels with hypokalemic periodic paralysis mutations [J].
Sokolov, Stanislav ;
Scheuer, Todd ;
Catterall, William A. .
JOURNAL OF GENERAL PHYSIOLOGY, 2010, 136 (02) :225-236
[39]   Channelopathies in Cav1.1, Cav1.3, and Cav1.4 voltage-gated L-type Ca2+ channels [J].
Striessnig, Joerg ;
Bolz, Hanno Joern ;
Koschak, Alexandra .
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY, 2010, 460 (02) :361-374
[40]   Paradoxical depolarization of BA2+-treated muscle exposed to low extracellular K+:: Insights into resting potential abnormalities in hypokalemic paralysis [J].
Struyk, Arie F. ;
Cannon, Stephen C. .
MUSCLE & NERVE, 2008, 37 (03) :326-337