Chahine M, Deschene I, Chen L Q, Kallen R G
Research Center, Laval Hospital, St. Foy, Quebec, Canada.
Am J Physiol. 1996 Aug;271(2 Pt 2):H498-506. doi: 10.1152/ajpheart.1996.271.2.H498.
The alpha-subunit encoding for voltage-gated sodium channels rSkM1 (rat skeletal muscle subtype 1) and hH1 (human heart subtype 1) has been cloned and expressed by various groups under various conditions in Xenopus oocytes and the tsA201 (HEK 293) mammalian cell line derived from human embryonic kidney cells. In this study, we have expressed hH1 and rSkM1 in tsA201 cells for comparison under the same conditions using patch-clamp methods. Our results show significant differences in the current-voltage (I-V) relationship, kinetics of current decay, voltage dependence of steady-state inactivation, and the time constant for recovery from inactivation. We studied several rSkM1/hH1 chimeric sodium channels to identify the structural regions responsible for the different biophysical behavior of the two channel subtypes. Exchanging the interdomain (ID3-4) loops, thought to contain the inactivation particle, between rSkM1 and hH1 had no effect on the electrophysiological behaviors, including inactivation, indicating that the differences in channel subtype characteristics are determined by parts of the channel other than the ID3-4 segment. The data on a chimeric channel in which D1 and D4 are derived from hH1 while D2 and D3 and the ID1-2, ID2-3, and ID3-4 loops are from rSkM1 show that D1 and/or D4 seem to be responsible for the slower kinetics of inactivation of hH1 while D2 and/or D3 appear to contain the determinants for the differences in the I-V relationship, steady-state inactivation (h infinity) curve, and the kinetics of the recovery from inactivation.
电压门控钠通道rSkM1(大鼠骨骼肌亚型1)和hH1(人类心脏亚型1)的α亚基编码基因已被多个研究小组在不同条件下克隆,并在非洲爪蟾卵母细胞和源自人类胚胎肾细胞的tsA201(HEK 293)哺乳动物细胞系中进行表达。在本研究中,我们使用膜片钳方法在相同条件下于tsA201细胞中表达hH1和rSkM1以进行比较。我们的结果显示,在电流-电压(I-V)关系、电流衰减动力学、稳态失活的电压依赖性以及失活恢复的时间常数方面存在显著差异。我们研究了几种rSkM1/hH1嵌合钠通道,以确定导致这两种通道亚型不同生物物理行为的结构区域。在rSkM1和hH1之间交换被认为包含失活颗粒的结构域间(ID3-4)环,对包括失活在内的电生理行为没有影响,这表明通道亚型特征的差异是由ID3-4片段以外的通道部分决定的。一个嵌合通道的数据显示,其D1和D4源自hH1,而D2和D3以及ID1-2、ID2-3和ID3-4环源自rSkM1,这表明D1和/或D4似乎是hH1失活动力学较慢的原因,而D2和/或D3似乎包含I-V关系、稳态失活(h∞)曲线以及失活恢复动力学差异的决定因素。