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钙离子和氢离子对大鼠鼓索神经对氯化钠和氯化钾反应的调节作用

Regulatory Effects of Ca2+ and H+ on the Rat Chorda Tympani Response to NaCl and KCl.

作者信息

DeSimone John A, Phan Tam-Hao T, Mummalaneni Shobha, Rhyu Mee-Ra, Heck Gerard L, Lyall Vijay

机构信息

Department of Physiology and Biophysics, Virginia Commonwealth University, Richmond, VA 23298-0551, USA and.

Korea Food Research Institute, Bundang-gu, Sungnam-si, Gyeonggi-do 463-746, Korea.

出版信息

Chem Senses. 2015 Jul;40(6):401-12. doi: 10.1093/chemse/bjv022. Epub 2015 May 7.

Abstract

Modulatory effects of pHi and [Ca(2+)]i on taste receptor cell (TRC) epithelial sodium channel (ENaC) were investigated by monitoring chorda tympani (CT) responses to NaCl and KCl at various lingual voltages, before and after lingual application of ionomycin and with 0-10mM CaCl2 in the stimulus and rinse solutions adjusted to pHo 2.0-9.7. 0.1 and 0.5M KCl responses varied continuously with voltage and were fitted to an apical ion channel kinetic model using the same parameters. ENaC-dependent NaCl CT response was fitted to the same channel model but with parameters characteristic of ENaC. A graded increase in TRC [Ca(2+)]i decreased the ENaC-dependent NaCl CT response, and inhibited and ultimately eliminated its pH sensitivity. CT responses to KCl were pHi- and [Ca(2+)]i-independent. Between ±60 mV applied lingual potential, the data were well described by a linear approximation to the nonlinear channel equation and yielded 2 parameters, the open-circuit response and the negative of the slope of the line in the CT response versus voltage plot, designated the response conductance. The ENaC-dependent NaCl CT response conductance was a linear function of the open-circuit response for all pHi-[Ca(2+)]i combinations examined. Analysis of these data shows that pHi and [Ca(2+)]i regulate TRC ENaC exclusively through modulation of the maximum CT response.

摘要

通过监测鼓索神经(CT)在不同舌面电压下对NaCl和KCl的反应,研究细胞内pH值(pHi)和细胞内钙离子浓度([Ca(2+)]i)对味觉受体细胞(TRC)上皮钠通道(ENaC)的调节作用。在舌面应用离子霉素前后,以及在刺激溶液和冲洗溶液中加入0-10mM CaCl2且将pH值调节至2.0-9.7的情况下进行实验。0.1M和0.5M KCl的反应随电压持续变化,并使用相同参数拟合到顶端离子通道动力学模型。依赖ENaC的NaCl的CT反应也拟合到相同的通道模型,但使用ENaC特有的参数。TRC中[Ca(2+)]i的分级增加会降低依赖ENaC的NaCl的CT反应,并抑制并最终消除其pH敏感性。CT对KCl的反应与pHi和[Ca(2+)]i无关。在施加±60mV舌面电位之间,数据通过对非线性通道方程的线性近似得到很好的描述,并产生两个参数,即开路反应和CT反应与电压图中直线斜率的负值,称为反应电导。对于所有检测的pHi-[Ca(2+)]i组合,依赖ENaC的NaCl的CT反应电导是开路反应的线性函数。对这些数据的分析表明,pHi和[Ca(2+)]i仅通过调节最大CT反应来调节TRC ENaC。

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