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关于毒蕈碱诱导培养的大鼠交感神经元M电流抑制的转导机制

On the transduction mechanism for muscarine-induced inhibition of M-current in cultured rat sympathetic neurones.

作者信息

Brown D A, Marrion N V, Smart T G

机构信息

Department of Pharmacology, School of Pharmacy, University of London.

出版信息

J Physiol. 1989 Jun;413:469-88. doi: 10.1113/jphysiol.1989.sp017664.

Abstract
  1. Dissociated adult or fetal rat superior cervical ganglion cells were voltage-clamped through a single patch pipette. The voltage-dependent K+ current, IM (M-current), was maintained by including MgATP in the pipette solution and by buffering the solution pH to 6.7. 2. Bath-applied muscarine (0.4 microM) produced a reversible inhibition of IM. 3. Addition of Gpp(NH)p (200 microM) or GTP-gamma-S (500 microM) to the pipette solution induced a slowly developing inhibition of IM and prevented recovery from subsequent muscarine-induced inhibition. 4. Addition of GDP-beta-S (500 microM) to the pipette solution reduced the amount of IM inhibition produced by 0.4 microM-muscarine by 42% and reduced the associated inward shift of the holding current by 56%. 5. Cells responded normally to muscarine after pre-treatment for 4-27 h with 500 ng ml-1 pertussis toxin (PTx). 6. IM was not diminished by extracellular addition of 1 mM-dibutyryl cyclic AMP, 8-bromo-cyclic AMP or dibutyryl cyclic GMP, or of 10 microM-forskolin. 7. IM was not reduced by inclusion of Li+ (2 mM) or inositol 1,4,5-trisphosphate (IP3, 100 microM) in the patch pipette, nor by ionophoretic injection of IP3 from an inserted micropipette. 8. Addition of 4-beta-phorbol 12,13-dibutyrate (PDBu, 0.5-2 microM) to the extracellular medium partly inhibited IM and reduced an additional component of resting membrane current. This effect was not replicated by 4-alpha-phorbol 12,13-didecanoate. 9. It is concluded that the inhibition of IM by muscarine is mediated through activation of a PTx-insensitive GTP-binding protein. The effect of muscarine appears not to be mediated by cyclic nucleotides or IP3 but may possibly involve the generation of diacylglycerols and activation of protein kinase C.
摘要
  1. 成年或胎鼠颈上神经节细胞经单个膜片吸管进行电压钳制。通过在吸管溶液中加入MgATP并将溶液pH缓冲至6.7来维持电压依赖性钾电流(IM,M电流)。2. 浴槽中加入毒蕈碱(0.4微摩尔)可对IM产生可逆性抑制。3. 向吸管溶液中加入Gpp(NH)p(200微摩尔)或GTP-γ-S(500微摩尔)可诱导IM缓慢出现抑制,并阻止其从随后毒蕈碱诱导的抑制中恢复。4. 向吸管溶液中加入GDP-β-S(500微摩尔)可使0.4微摩尔毒蕈碱产生的IM抑制量减少42%,并使相关的钳制电流内向偏移减少56%。5. 用500纳克/毫升百日咳毒素(PTx)预处理4至27小时后,细胞对毒蕈碱的反应正常。6. 细胞外加入1毫摩尔二丁酰环磷酸腺苷、8-溴环磷酸腺苷或二丁酰环磷酸鸟苷,或10微摩尔福斯可林,IM均未减少。7. 膜片吸管中加入Li⁺(2毫摩尔)或肌醇1,4,5-三磷酸(IP3,100微摩尔),或通过插入的微吸管离子电泳注入IP3,IM均未降低。8. 向细胞外培养基中加入4-β-佛波醇12,13-二丁酸酯(PDBu,0.5至2微摩尔)可部分抑制IM,并减少静息膜电流的另一个成分。4-α-佛波醇12,13-二癸酸酯未产生此效应。9. 得出结论:毒蕈碱对IM的抑制是通过激活一种对PTx不敏感的GTP结合蛋白介导的。毒蕈碱的作用似乎不是由环核苷酸或IP3介导的,但可能涉及二酰基甘油的生成和蛋白激酶C的激活。

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