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The spatial distributions of odorant sensitivity and odorant-induced currents in salamander olfactory receptor cells.

机译:sal嗅觉受体细胞中气味敏感性和气味诱导电流的空间分布。

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摘要

1. Suction electrode and whole-cell recording were used to record membrane currents from defined regions of solitary olfactory receptor cells from Ambystoma tigrinum. 2. Under whole-cell current clamp, stimulation of cells with odorants activated an inward current in the cilia, an outward current in the soma, and induced a membrane depolarization. Clamping the membrane potential at its resting value of -70 mV increased the inward ciliary current 5- to 10-fold and abolished the outward somatic current. 3. Local odorant stimulation was accomplished by ejecting an odorant solution into a steady flow of Ringer solution. A suction electrode was used to immobilize a cell in the flow and to record the odorant-induced somatic current. The amplitude of the odorant response increased approximately linearly with the length of cilia exposed to the stimulus, but was independent of the length of dendrite exposed to the stimulus, indicating that odorant sensitivity is predominantly localized to the cilia. 4. The latencies of responses recorded under flow did not vary with the region of the cilia which was exposed to the stimulus. Also, the magnitude of the inward ciliary current activated by odorants was equal to that of the whole-cell current recorded under voltage clamp. These observations indicate that the odorant-induced inward current is predominantly localized to the ciliary membrane. 5. Under whole-cell current clamp, local application of a high-K+ solution generated an outward somatic current when applied to the dendrite, but had no effect when applied to the cilia. This indicates that the density of the resting K+ conductance is lower in the ciliary membrane than in the dendritic membrane. 6. The results above are consistent with the hypothesis that all components of the transduction mechanism are uniformly distributed within the cilia, and that the cilia are electrotonically compact, even during an odorant-induced conductance increase.
机译:1.使用抽吸电极和全细胞记录来记录来自虎斑小白鼠的单个嗅觉受体细胞的限定区域的膜电流。 2.在全细胞电流钳下,用增香剂刺激细胞激活了纤毛中的内向电流,体细胞中的外向电流,并引起膜去极化。将膜电位钳制在其静止值-70 mV时,会使内向睫状电流增加5到10倍,并消除外向体细胞电流。 3.通过将气味剂溶液喷射到稳定的林格溶液流中来实现局部气味剂刺激。抽吸电极用于固定流动中的细胞,并记录气味诱导的体细胞电流。气味响应的幅度随暴露于刺激的纤毛的长度近似线性增加,但与暴露于刺激的枝晶的长度无关,这表明气味敏感性主要集中在纤毛上。 4.在血流下记录的反应潜伏期不随暴露于刺激的纤毛区域而变化。而且,由气味剂激活的内向睫毛电流的大小等于在电压钳制下记录的全细胞电流的大小。这些观察结果表明,气味引起的内向电流主要位于睫状膜上。 5.在全细胞电流钳下,局部施加高K +溶液在施加至枝晶时会产生向外的体细胞电流,但施加至纤毛时则没有作用。这表明在睫状膜中静息K +电导的密度低于在树突状膜中。 6.上面的结果与以下假设相符,即转导机制的所有成分均均匀分布在纤毛内,并且纤毛即使在增香剂引起的电导增加时也呈电致密性。

著录项

  • 作者

    Lowe, G; Gold, G H;

  • 作者单位
  • 年度 1991
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  • 原文格式 PDF
  • 正文语种 en
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