首页> 外文期刊>Journal of Comparative Physiology, A. Sensory, Neural, and Behavioral Physiology >A K+/H+ P-ATPase transport in the accessory cell membrane of the blowfly taste chemosensilla sustains the transepithelial potential
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A K+/H+ P-ATPase transport in the accessory cell membrane of the blowfly taste chemosensilla sustains the transepithelial potential

机译:蝇蝇味化学感受器的辅助细胞膜中的K + / H + P-ATPase转运维持了上皮电位

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An electrogenic K+ transport in the tormogen cell of insect chemosensilla is involved in the generation and maintenance of the transepithelial potential (TEP). To gain more information about the K+ transport system underlying the TEP generation and the location of its components in the plasma membrane of the tormogen cell, we studied the effects of inhibitors of K+/H+P-ATPase (bafilomycin A1, omeprazole and Na-orthovanadate), of K+/Cl- co-transport (bumetanide), of Cl- channels (NPPB) and of a K+ channel blocker (BaCl2). The relationship between TEP amplitude and spike firing activity was also studied. Experiments were performed on the labellar chemosensilla of the blowfly Protophormia terraenovae using a modified tip-recording technique. Results show that: (a) K+/H+ P-ATPase inhibitors significantly decrease the TEP, when properly applied to the labellum for 20 min, so as to reach the basolateral side of the plasma membrane, while no effect was detected when applied to the apical side, (b) bumetanide, NPPB and BaCl2 decrease the TEP value only when administered to the apical side, (c) spike activity is positively correlated with the TEP. A model is proposed of the active and passive K+ transports sustaining the TEP associated with the blowfly chemosensilla.
机译:昆虫化学感受器的致热细胞中的电K +转运与跨上皮电位(TEP)的产生和维持有关。为了获得有关TEP产生的K +转运系统及其在致癌细胞质膜中的位置的更多信息,我们研究了K + / H + P-ATPase抑制剂(bafilomycin A1,奥美拉唑和Na-原位钒酸盐,K + / Cl-共转运(布美他尼),Cl-通道(NPPB)和K +通道阻滞剂(BaCl2)。还研究了TEP振幅与峰值发射活动之间的关系。使用改良的吸头记录技术,对苍蝇的龟原虫的标签化的化学感受器进行了实验。结果表明:(a)当将K + / H + P-ATPase抑制剂适当地涂在红唇上20分钟,从而到达质膜的基底外侧时,K + / H + P-ATPase抑制剂会显着降低TEP,而当将K + / H + P-ATPase抑制剂涂在基膜的基底外侧时,则没有发现任何作用。顶侧,(b)布美他尼,NPPB和BaCl2仅在顶侧给药时才降低TEP值,(c)刺突活性与TEP正相关。提出了一种主动和被动K +转运蛋白的模型,该转运蛋白能维持与蝇蝇化学感受器相关的TEP。

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