Taverna Stefano, Tkatch Tatiana, Metz Alexia E, Martina Marco
Department of Physiology, Feinberg School of Medicine, Institute for Neuroscience, Northwestern University, Chicago, Illinois 60611, USA.
J Neurosci. 2005 Oct 5;25(40):9162-70. doi: 10.1523/JNEUROSCI.2454-05.2005.
Among the electrophysiological properties differentiating stratum oriens horizontal interneurons from pyramidal neurons of the CA1 hippocampal subfield are the more depolarized resting potential and the higher input resistance; additionally, these interneurons are also less sensitive to ischemic damage than pyramidal cells. A differential expression of pH-sensitive leakage potassium channels (TASK) could contribute to all of these differences. To test this hypothesis, we studied the expression and properties of TASK channels in the two cell types. Electrophysiological recordings from acute slices showed that barium- and bupivacaine-sensitive TASK currents were detectable in pyramidal cells but not in interneurons and that extracellular acidification caused a much stronger depolarization in pyramidal cells than in interneurons. This pyramidal cell depolarization was paralleled by an increase of the input resistance, suggesting the blockade of a background conductance. Single-cell reverse transcription-PCR experiments showed that the expression profile of TASK channels differ between the two cell types and suggested that these channels mediate an important share of the leakage current of pyramidal cells. We suggest that the different expression of TASK channels in these cell types contribute to their electrophysiological differences and may result in cell-specific sensitivity to extracellular acidification in conditions such as epilepsy and ischemia.
将海马体CA1亚区的锥体细胞与原层水平中间神经元区分开来的电生理特性包括:静息电位去极化程度更高、输入电阻更高;此外,与锥体细胞相比,这些中间神经元对缺血损伤也更不敏感。pH敏感的泄漏钾通道(TASK)的差异表达可能导致了所有这些差异。为了验证这一假设,我们研究了这两种细胞类型中TASK通道的表达和特性。急性脑片的电生理记录显示,在锥体细胞中可检测到对钡和布比卡因敏感的TASK电流,而在中间神经元中则检测不到,并且细胞外酸化在锥体细胞中引起的去极化比在中间神经元中要强得多。这种锥体细胞去极化与输入电阻的增加同时出现,表明存在背景电导的阻断。单细胞逆转录PCR实验表明,这两种细胞类型中TASK通道的表达谱不同,提示这些通道介导了锥体细胞泄漏电流的重要部分。我们认为,这些细胞类型中TASK通道的不同表达导致了它们的电生理差异,并可能在癫痫和缺血等情况下导致细胞对细胞外酸化的特异性敏感性。