Koschak Alexandra, Reimer Daniel, Walter Doris, Hoda Jean-Charles, Heinzle Thomas, Grabner Manfred, Striessnig Jörg
Institut für Pharmazie, Abteilung Pharmakologie und Toxikologie, A-6020 Innsbruck, Austria.
J Neurosci. 2003 Jul 9;23(14):6041-9. doi: 10.1523/JNEUROSCI.23-14-06041.2003.
The neuronal L-type calcium channels (LTCCs) Cav1.2alpha1 and Cav1.3alpha1 are functionally distinct. Cav1.3alpha1 activates at lower voltages and inactivates more slowly than Cav1.2alpha1, making it suitable to support sustained L-type Ca2+ inward currents (ICa,L) and serve in pacemaker functions. We compared the biophysical and pharmacological properties of human retinal Cav1.4alpha1 using the whole-cell patch-clamp technique after heterologous expression in tsA-201 cells with other L-type alpha1 subunits. Cav1.4alpha1-mediated inward Ba2+ currents (IBa) required the coexpression of alpha2delta1 and beta3 or beta2a subunits and were detected in a lower proportion of transfected cells than Cav1.3alpha1. IBa activated at more negative voltages (5% activation threshold; -39mV; 15 mm Ba2+) than Cav1.2alpha1 and slightly more positive than Cav1.3alpha1. Voltage-dependent inactivation of IBa was slower than for Cav1.2alpha1 and Cav1.3alpha1( approximately 50% inactivation after 5 sec; alpha2delta1 + beta3 coexpression). Inactivation was not increased with Ca2+ as the charge carrier, indicating the absence of Ca2+-dependent inactivation. Cav1.4alpha1 exhibited voltage-dependent, G-protein-independent facilitation by strong depolarizing pulses. The dihydropyridine (DHP)-antagonist isradipine blocked Cav1.4alpha1 with approximately 15-fold lower sensitivity than Cav1.2alpha1 and in a voltage-dependent manner. Strong stimulation by the DHP BayK 8644 was found despite the substitution of an otherwise L-type channel-specific tyrosine residue in position 1414 (repeat IVS6) by a phenylalanine. Cav1.4alpha1 + alpha2delta1 + beta channel complexes can form LTCCs with intermediate DHP antagonist sensitivity lacking Ca2+-dependent inactivation. Their biophysical properties should enable them to contribute to sustained ICa,L at negative potentials, such as required for tonic neurotransmitter release in sensory cells and plateau potentials in spiking neurons.
神经元L型钙通道(LTCCs)Cav1.2α1和Cav1.3α1在功能上有所不同。Cav1.3α1在较低电压下激活,且比Cav1.2α1失活更慢,这使其适合支持持续的L型Ca2+内向电流(ICa,L)并发挥起搏功能。我们在tsA-201细胞中异源表达后,使用全细胞膜片钳技术比较了人视网膜Cav1.4α1与其他L型α1亚基的生物物理和药理学特性。Cav1.4α1介导的内向Ba2+电流(IBa)需要共表达α2δ1和β3或β2a亚基,且在转染细胞中检测到的比例低于Cav1.3α1。与Cav1.二、翻译下列句子。
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