Doolin R E, Gilbertson T A
Pennington Biomedical Research Center, Baton Rouge, Louisiana 70808, USA.
J Gen Physiol. 1996 Apr;107(4):545-54. doi: 10.1085/jgp.107.4.545.
The role of amiloride-sensitive Na+ channels (ASSCs) in the transduction of salty taste stimuli in rat fungiform taste buds has been well established. Evidence for the involvement of ASSCs in salt transduction in circumvallate and foliate taste buds is, at best, contradictory. In an attempt to resolve this apparent controversy, we have begun to look for functional ASSCs in taste buds isolated from fungiform, foliate, and circumvallate papillae of male Sprague-Dawley rats. By use of a combination of whole-cell and nystatin-perforated patch-clamp recording, cells within the taste bud that exhibited voltage-dependent currents, reflective of taste receptor cells (TRCs), were subsequently tested for amiloride sensitivity. TRCs were held at -70 mV, and steady-state current and input resistance were monitored during superfusion of Na(+)-free saline and salines containing amiloride (0.1 microM to 1 mM). Greater than 90% of all TRCs from each of the papillae responded to Na+ replacement with a decrease in current and an increase in input resistance, reflective of a reduction in electrogenic Na+ movement into the cell. ASSCs were found in two thirds of fungiform and in one third of foliate TRCs, whereas none of the circumvallate TRCs was amiloride sensitive. These findings indicate that the mechanism for Na+ influx differs among taste bud types. All amiloride-sensitive currents had apparent inhibition constants in the submicromolar range. These results agree with afferent nerve recordings and raise the possibility that the extensive labeling of the ASSC protein and mRNA in the circumvallate papillae may reflect a pool of nonfunctional channels or a pool of channels that lacks sensitivity to amiloride.
氨氯地平敏感的钠离子通道(ASSCs)在大鼠菌状味蕾咸味刺激转导中的作用已得到充分证实。关于ASSCs参与轮廓乳头和叶状味蕾盐转导的证据充其量是相互矛盾的。为了解决这一明显的争议,我们开始在从雄性Sprague-Dawley大鼠的菌状、叶状和轮廓乳头分离出的味蕾中寻找功能性ASSCs。通过结合使用全细胞和制霉菌素穿孔膜片钳记录,对味蕾中表现出电压依赖性电流(反映味觉受体细胞(TRCs))的细胞随后进行氨氯地平敏感性测试。将TRCs钳制在-70 mV,并在无钠盐水和含氨氯地平(0.1 microM至1 mM)的盐水中灌注期间监测稳态电流和输入电阻。来自每个乳头的所有TRCs中超过90%对用钠替代的反应是电流降低和输入电阻增加,这反映了进入细胞的电生钠运动减少。在三分之二的菌状TRCs和三分之一的叶状TRCs中发现了ASSCs,而轮廓乳头的TRCs均对氨氯地平不敏感。这些发现表明,不同类型的味蕾中钠内流的机制不同。所有氨氯地平敏感电流的表观抑制常数都在亚微摩尔范围内。这些结果与传入神经记录一致,并增加了轮廓乳头中ASSC蛋白和mRNA广泛标记可能反映一组无功能通道或一组对氨氯地平缺乏敏感性的通道的可能性。