Southern Illinois University School of Medicine, Department of Pharmacology, Springfield, IL 62794, USA.
Acta Biochim Biophys Sin (Shanghai). 2010 Jan;42(1):8-20. doi: 10.1093/abbs/gmp101.
Hypothalamic histaminergic tuberomammillary (TM) neurons express nicotinic acetylcholine receptors (nAChRs) with kinetic and pharmacological properties resembling those of highly Ca(2+) permeable alpha7 nAChRs. However, the Ca(2+) permeability of TM nAChR channels has not been determined. To directly evaluate the Ca(2+) permeability of TM nAChRs, patch-clamp recordings were conducted using non-cultured acutely dissociated TM neurons and external solutions containing low (2 mM) and high (20 mM) concentrations of Ca(2+). A shift in the reversal potentials was determined from the current-voltage relationships and the permeability ratio, P(Ca)/P(Na), was estimated within the Goldman-Hodgkin-Katz constant field approximation. TM nAChRs were found to be highly Ca(2+) permeable with the permeability ratio, P(Ca)/P(Na)(nAChR) being approximately 5.9 and the fractional Ca(2+) current, P(f)(nAChR) being approximately 10.1% at -60 mV. As a positive control for the applied methods and analysis, the permeability ratio, P(Ca)/P(Na)(NMDAR) being approximately 8.3 and the fractional Ca(2+) current, P(f)(NMDAR) being approximately 13.6% at -60 mV for NMDA receptors were determined using non-cultured acutely dissociated hippocampal pyramidal neurons and found similar to previously reported values. Therefore, these results demonstrate that native TM nAChRs are highly Ca(2+) permeable, but approximately 1.4 fold less permeable to Ca(2+) than native hippocampal pyramidal NMDA receptors.
下丘脑组胺能结节乳头(TM)神经元表达烟碱型乙酰胆碱受体(nAChRs),其动力学和药理学特性类似于高钙通透性的α7 nAChRs。然而,TM nAChR 通道的钙通透性尚未确定。为了直接评估 TM nAChRs 的钙通透性,使用非培养的急性分离 TM 神经元进行了膜片钳记录,并使用含有低(2 mM)和高(20 mM)浓度 Ca2+的外部溶液。从电流-电压关系中确定反转电位,并在 Goldman-Hodgkin-Katz 恒场近似下估计通透性比 P(Ca)/P(Na)。发现 TM nAChRs 具有很高的钙通透性,通透性比 P(Ca)/P(Na)(nAChR)约为 5.9,在-60 mV 时,钙电流的分数 P(f)(nAChR)约为 10.1%。作为应用方法和分析的阳性对照,使用非培养的急性分离海马锥体神经元确定了 NMDA 受体的通透性比 P(Ca)/P(Na)(NMDAR)约为 8.3,在-60 mV 时,钙电流的分数 P(f)(NMDAR)约为 13.6%,与之前报道的值相似。因此,这些结果表明,天然 TM nAChRs 具有很高的钙通透性,但与天然海马锥体 NMDA 受体相比,对 Ca2+的通透性约低 1.4 倍。