首页> 美国卫生研究院文献>The Journal of Physiology >Muscarinic receptor hyperpolarizes cochlear hair cells of chick by activating Ca(2+)-activated K+ channels.
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Muscarinic receptor hyperpolarizes cochlear hair cells of chick by activating Ca(2+)-activated K+ channels.

机译:毒蕈碱受体通过激活Ca(2+)激活的K +通道超极化小鸡的耳蜗毛细胞。

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摘要

1. Electrical responses to extracellularly applied acetylcholine (ACh) and to intracellularly introduced substances were studied in isolated short and tall hair cells from the chick cochlear organ by a whole-cell voltage clamp technique using a patch electrode. These cells were isolated without using proteolytic enzymes. 2. Short hair cells generated a transient outward current at -50 mV in normal saline in response to puff-applied 100 microM-ACh, when the patch electrode was filled with a 160 mM-K+ and 100 microM-EGTA-based intracellular medium. The amplitude was 317.1 +/- 97.1 pA (n = 32). When ACh was applied ionophoretically, the outward current was generated with a delay of about 10 ms. 3. The amplitude of ACh-induced current was dose dependent with a KD of 19 microM and a Hill coefficient of 1.6 when measured at -50 mV. 4. The ACh (100 microM)-induced current was suppressed by 1 microM-atropine. ACh-induced current was generated in a Ca(2+)-free extracellular medium; however, the second ACh puff in the Ca(2+)-free medium generated a much reduced response. ACh-induced current was suppressed reversibly by 100 microM-quinine. 5. Intracellular injections of guanosine-5'-O-(3-thiotriphosphate) (GTP gamma S), inositol 1,4,5-trisphosphate (IP3) or Ca2+ (1 microM) via the patch pipette activated outward currents at -50 mV. 6. When the internal medium with strong Ca(2+)-buffering capacity (5 mM-EGTA) was used, the ACh-induced current was reduced to 39.3 +/- 6.8 pA (n = 4) at -50 mV (12.3% of the response in the low-EGTA medium). 7. The reversal potential of the ACh-induced current was -85.7 +/- 4.2 mV (n = 3) in normal saline containing 5 mM-K+. The reversal potential was dependent on the extracellular K+ concentration ([K+]o) and was shifted 57 mV by a 10-fold increase in [K+]o at room temperature (20-25 degrees C). 8. These results (points 4-7) indicate that ACh induces a K+ conductance by releasing Ca2+ intracellularly, probably by activating the pathway of muscarine receptor, G-protein and IP3. 9. Channel activities were recorded using cell-attached patch electrodes. Channel activities were rarely observed when ACh was applied to the extra-patch membrane, while robust channel activities were observed when ACh was included in the patch pipette medium. It is therefore suggested that Ca(2+)-activated K+ channels exist in the membrane in close vicinity to muscarinic receptor molecules and intracellular Ca2+ release sites.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.通过使用贴片电极的全细胞电压钳技术,在来自鸡耳蜗器官的分离的短毛细胞和高毛细胞中研究了对细胞外施加的乙酰胆碱(ACh)和细胞内引入物质的电响应。不使用蛋白水解酶分离这些细胞。 2.当贴片电极充满160 mM-K +和100 microM-EGTA基细胞内培养基时,短毛细胞在生理盐水中在-50 mV处产生短暂的向外电流,以响应于抽吸100 µM-ACh。幅度为317.1 +/- 97.1 pA(n = 32)。离子注入ACh时,产生向外电流的延迟约为10 ms。 3.当在-50 mV下测量时,ACh感应电流的幅度与KD为19 microM,Hill系数为1.6呈剂量依赖性。 4. 1 microM-阿托品抑制了ACh(100 microM)诱导的电流。 ACh诱导电流是在无Ca(2+)的细胞外培养基中产生的;但是,第二次在无Ca(2+)介质中进行ACh抽吸产生了大大降低的响应。 100 microM-奎宁可逆地抑制ACh诱导的电流。 5.通过贴片移液器向细胞内注射鸟苷5'-O-(3-硫代三磷酸)(GTPγS),肌醇1,4,5-三磷酸(IP3)或Ca2 +(1 microM),在-50时激活向外的电流毫伏6.当使用具有强大的Ca(2+)缓冲能力的内部介质(5 mM-EGTA)时,在-50 mV(12.3)下,ACh诱导的电流降低到39.3 +/- 6.8 pA(n = 4)。在低EGTA培养基中的响应百分比)。 7.在含有5 mM-K +的生理盐水中,ACh诱导的电流的反向电位为-85.7 +/- 4.2 mV(n = 3)。逆转电位取决于细胞外K +浓度([K +] o),并且在室温下(20-25摄氏度)通过[K +] o的10倍增加而偏移了57 mV。 8.这些结果(第4-7点)表明ACh可能通过激活毒蕈碱受体,G蛋白和IP3的途径在细胞内释放Ca2 +来诱导K +电导。 9.使用附着细胞的贴片电极记录通道活性。当将ACh应用于膜片外膜时,很少观察到通道活性,而当将ACh包含在膜片移液器培养基中时,则观察到强劲的通道活性。因此建议在膜中紧邻毒蕈碱受体分子和细胞内Ca2 +释放位点存在Ca(2+)激活的K +通道。(摘要截短为400字)

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