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肌强直山羊肌肉氯电导降低的分子基础。

Molecular basis for decreased muscle chloride conductance in the myotonic goat.

作者信息

Beck C L, Fahlke C, George A L

机构信息

Department of Medicine, Vanderbilt University School of Medicine, Nashville, TN 37232-2372, USA.

出版信息

Proc Natl Acad Sci U S A. 1996 Oct 1;93(20):11248-52. doi: 10.1073/pnas.93.20.11248.

Abstract

Certain forms of myotonia, a condition characterized by delayed relaxation of muscle secondary to sarcolemmal hyperexcitability, are caused by diminished chloride conductance in the muscle cell membrane. We have investigated the molecular basis for decreased muscle chloride conductance in the myotonic goat, an historically important animal model for the elucidation of the role of chloride in muscle excitation. A single nucleotide change causing the substitution of proline for a conserved alanine residue in the carboxyl terminus of the goat muscle chloride channel (gCIC-1) was discovered. Heterologous expression of the mutation demonstrated a substantial (+47 mV) shift in the midpoint of steady-state activation of the channel, resulting in a diminished channel open probability at voltages near the resting membrane potential of skeletal muscle. These results provide a molecular basis for the decreased chloride conductance in myotonic muscle.

摘要

某些形式的肌强直,一种以肌膜兴奋性过高继发肌肉松弛延迟为特征的病症,是由肌细胞膜中氯离子电导降低引起的。我们研究了肌强直山羊肌肉氯离子电导降低的分子基础,肌强直山羊是一种在历史上对于阐明氯离子在肌肉兴奋中的作用很重要的动物模型。发现了一个单核苷酸变化,该变化导致山羊肌肉氯离子通道(gCIC-1)羧基末端一个保守的丙氨酸残基被脯氨酸取代。该突变的异源表达表明通道稳态激活中点有显著(+47 mV)偏移,导致在接近骨骼肌静息膜电位的电压下通道开放概率降低。这些结果为肌强直肌肉中氯离子电导降低提供了分子基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cbf2/38315/7f0187a0da08/pnas01524-0722-a.jpg

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