Hebeisen Simon, Heidtmann Hannelore, Cosmelli Diego, Gonzalez Carlos, Poser Barbara, Latorre Ramon, Alvarez Osvaldo, Fahlke Christoph
RWTH Aachen, Institute of Physiology, Aachen, Germany.
Biophys J. 2003 Apr;84(4):2306-18. doi: 10.1016/S0006-3495(03)75036-X.
ClC-4 and ClC-5 are mammalian ClC isoforms with unique ion conduction and gating properties. Macroscopic current recordings in heterologous expression systems revealed very small currents at negative potentials, whereas a substantially larger instantaneous current amplitude and a subsequent activation were observed upon depolarization. Neither the functional basis nor the physiological impact of these channel features are currently understood. Here, we used whole-cell recordings to study pore properties of human ClC-4 channels heterologously expressed in tsA201 or HEK293 cells. Variance analysis demonstrated that the prominent rectification of the instantaneous macroscopic current amplitude is due to a voltage-dependent unitary current conductance. The single channel amplitudes are very small, i.e., 0.10 +/- 0.02 pA at +140 mV for external Cl(-) and internal I(-). Conductivity and permeability sequences were determined for various external and internal anions, and both values increase for anions with lower dehydration energies. ClC-4 exhibits pore properties that are distinct from other ClC isoforms. These differences can be explained by assuming differences in the size of the pore narrowing and the electrostatic potentials within the ion conduction pathways.
ClC-4和ClC-5是具有独特离子传导和门控特性的哺乳动物ClC亚型。在异源表达系统中的宏观电流记录显示,在负电位下电流非常小,而在去极化时观察到明显更大的瞬时电流幅度和随后的激活。目前尚不清楚这些通道特征的功能基础和生理影响。在这里,我们使用全细胞记录来研究在tsA201或HEK293细胞中异源表达的人ClC-4通道的孔特性。方差分析表明,瞬时宏观电流幅度的显著整流是由于电压依赖性单通道电导。单通道幅度非常小,即在+140 mV时,外部Cl(-)和内部I(-)的单通道幅度为0.10 +/- 0.02 pA。测定了各种外部和内部阴离子的电导率和渗透率序列,对于脱水能较低的阴离子,这两个值都会增加。ClC-4表现出与其他ClC亚型不同的孔特性。这些差异可以通过假设孔变窄的大小和离子传导途径内的静电势的差异来解释。