Denton Jerod, Nehrke Keith, Rutledge Eric, Morrison Rebecca, Strange Kevin
Department of Anaesthesiology, Vanderbilt University Medical Center, T-4202 Medical Center North, Nashville, TN 37232-2520, USA.
J Physiol. 2004 Feb 15;555(Pt 1):97-114. doi: 10.1113/jphysiol.2003.053165. Epub 2003 Oct 17.
CLH-3 is a meiotic cell cycle-regulated ClC Cl- channel that is functionally expressed in oocytes of the nematode Caenorhabditis elegans. CLH-3a and CLH-3b are alternatively spliced variants that have identical intramembrane regions, but which exhibit striking differences in their N- and C-termini. Structural and functional studies indicate that N- and C-terminal domains modulate ClC channel activity. We therefore postulated that alternative splicing of CLH-3 would alter channel gating and physiological functions. To begin testing this hypothesis, we characterized the biophysical properties of CLH-3a and CLH-3b expressed heterologously in HEK293 cells. CLH-3a activates more slowly and requires stronger hyperpolarization for activation than CLH-3b. Depolarizing conditioning voltages dramatically increase CLH-3a current amplitude and induce a slow inactivation process at hyperpolarized voltages, but have no significant effect on CLH-3b activity. CLH-3a also differs significantly in its extracellular Cl- and pH sensitivity compared to CLH-3b. Immunofluorescence microscopy demonstrated that CLH-3b is translationally expressed during all stages of oocyte development, and furthermore, the biophysical properties of the native oocyte Cl- current are indistinguishable from those of heterologously expressed CLH-3b. We conclude that CLH-3b carries the oocyte Cl- current and that the channel probably functions in nonexcitable cells to depolarize membrane potential and/or mediate net Cl- transport. The unique voltage-dependent properties of CLH-3a suggest that the channel may function in muscle cells and neurones to regulate membrane excitability. We suggest that alternative splicing of CLH-3 N- and C-termini modifies the functional properties of the channel by altering the accessibility and/or function of pore-associated ion-binding sites.
CLH-3是一种受减数分裂细胞周期调控的ClC氯离子通道,在线虫秀丽隐杆线虫的卵母细胞中功能性表达。CLH-3a和CLH-3b是选择性剪接变体,它们具有相同的膜内区域,但在N端和C端表现出显著差异。结构和功能研究表明,N端和C端结构域调节ClC通道活性。因此,我们推测CLH-3的选择性剪接会改变通道门控和生理功能。为了开始验证这一假设,我们对在HEK293细胞中异源表达的CLH-3a和CLH-3b的生物物理特性进行了表征。与CLH-3b相比,CLH-3a激活更慢,并且需要更强的超极化来激活。去极化预处理电压显著增加CLH-3a电流幅度,并在超极化电压下诱导缓慢失活过程,但对CLH-3b活性没有显著影响。与CLH-3b相比,CLH-3a在细胞外氯离子和pH敏感性方面也有显著差异。免疫荧光显微镜显示,CLH-3b在卵母细胞发育的所有阶段都有翻译表达,此外,天然卵母细胞氯离子电流的生物物理特性与异源表达的CLH-3b的生物物理特性无法区分。我们得出结论,CLH-3b携带卵母细胞氯离子电流,并且该通道可能在非兴奋性细胞中发挥作用,使膜电位去极化和/或介导净氯离子转运。CLH-3a独特的电压依赖性特性表明,该通道可能在肌肉细胞和神经元中发挥作用,以调节膜兴奋性。我们认为,CLH-3 N端和C端的选择性剪接通过改变与孔相关的离子结合位点的可及性和/或功能来修饰通道的功能特性。