Lin Min-Jon, Huang Ren-Yu, Pan Huichin, Hsiao Kuang-Ming
Department of Biomedical Sciences, Chung Shan Medical University, No. 110, Sec 1, Chien-Kuo N. Road, Taichung 402, Taiwan, ROC.
Biochem Biophys Res Commun. 2008 Jan 25;365(4):724-8. doi: 10.1016/j.bbrc.2007.11.029. Epub 2007 Nov 21.
In this study, we investigated the effect of NO donor, diethylamine/nitric oxide (DEA/NO), on the electrophysiological behavior of human skeletal muscle chloride channel (CLCN1). The wild-type and variants of CLCN1, including one polymorphism (P727L) and four mutants (T631I, D644G, G482R, and S471F), were expressed in Xenopus oocytes and the ionic current was measured by two-electrode voltage-clamp method. Our results revealed that there is no significant difference in the current-voltage relationships and half-voltage values of open probability between wild-type and variants of CLCN1 except for G482R. Application of the DEA-NO (0.1mM) significantly increases the channel conductance of wild-type, T631I, D644G, and S471F, but not P727L. This indicates that P727L polymorphism causes loss of sensitivity of CLCN1 to the DEA/NO treatment, which could be due to a conformational change caused by proline substitution. The data suggest that the polymorphic changes may affect the function of CLCN1 in response to the treatment of chemical compounds.
在本研究中,我们研究了一氧化氮供体二乙胺/一氧化氮(DEA/NO)对人骨骼肌氯离子通道(CLCN1)电生理行为的影响。CLCN1的野生型和变体,包括一种多态性(P727L)和四种突变体(T631I、D644G、G482R和S471F),在非洲爪蟾卵母细胞中表达,并通过双电极电压钳法测量离子电流。我们的结果显示,除G482R外,CLCN1野生型和变体之间的电流-电压关系及开放概率的半电压值没有显著差异。应用DEA-NO(0.1mM)可显著增加野生型、T631I、D644G和S471F的通道电导,但对P727L无效。这表明P727L多态性导致CLCN1对DEA/NO处理的敏感性丧失,这可能是由于脯氨酸取代引起的构象变化所致。数据表明,多态性变化可能会影响CLCN1对化合物处理的反应功能。