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离子跨蛙嗅觉黏膜的转运:环核苷酸对基础状态和气味刺激状态的作用。

Ion transport across the frog olfactory mucosa: the action of cyclic nucleotides on the basal and odorant-stimulated states.

作者信息

Persaud K C, Heck G L, DeSimone S K, Getchell T V, DeSimone J A

机构信息

Department of Physiology and Biophysics, Medical College of Virginia, Richmond.

出版信息

Biochim Biophys Acta. 1988 Sep 15;944(1):49-62. doi: 10.1016/0005-2736(88)90315-x.

Abstract

The action of cyclic nucleotides on the short-circuit current across the isolated bullfrog olfactory mucosa was studied both in the absence and presence of odorants. 8-Bromo-cAMP applied to the ciliated side of the mucosa caused a concentration-dependent, reversible increase in the basal short-circuit current, but not when it was applied to the submucosal side. The current had a sigmoidal concentration dependence described by the Hill equation. The magnitude of the odorant-evoked current was enhanced after bathing the ciliated side with cAMP analogs or modulators of intracellular cAMP. GTP gamma S added to the ciliated side increased the odorant-evoked current, while GDP beta S caused a decrease. Current transients induced by stimulating the ciliated side with either pulses of odorant or 8-bromo-cAMP were partially suppressed by amiloride, but only when amiloride and stimulant were presented simultaneously. Pulses of 8-bromo-cAMP and odorant presented simultaneously resulted in currents that added nonlinearly. In the absence of odorant, 8-bromo-cGMP caused a concentration-dependent decrease in net inward current that was reversed by 8-bromo-cAMP. Odorant-evoked currents were also reduced by 8-bromo-cGMP, and these could not be reversed by 8-bromo-cAMP. The results indicate that one type of olfactory transduction process involves the activation by cAMP of an inward current through an amiloride-sensitive apical ion channel and that this mechanism is mediated by a stimulatory G-protein.

摘要

在有无气味剂的情况下,研究了环核苷酸对分离的牛蛙嗅觉黏膜跨膜短路电流的作用。将8-溴-cAMP施加于黏膜的纤毛侧会导致基础短路电流呈浓度依赖性、可逆性增加,但施加于黏膜下层侧时则不会。该电流具有由希尔方程描述的S形浓度依赖性。在用cAMP类似物或细胞内cAMP调节剂浸泡纤毛侧后,气味剂诱发电流的幅度会增强。添加到纤毛侧的GTPγS会增加气味剂诱发电流,而GDPβS则会导致电流降低。用气味剂脉冲或8-溴-cAMP刺激纤毛侧所诱导的电流瞬变会被氨氯吡脒部分抑制,但仅当氨氯吡脒和刺激剂同时出现时才会如此。同时施加8-溴-cAMP和气味剂脉冲会产生非线性相加的电流。在没有气味剂的情况下,8-溴-cGMP会导致净内向电流呈浓度依赖性降低,而8-溴-cAMP可使其逆转。8-溴-cGMP也会降低气味剂诱发电流,且这些电流不能被8-溴-cAMP逆转。结果表明,一种嗅觉转导过程涉及cAMP通过氨氯吡脒敏感的顶端离子通道激活内向电流,并且该机制由刺激性G蛋白介导。

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