首页> 美国卫生研究院文献>The Journal of Physiology >Conductance and kinetic properties of single nicotinic acetylcholine receptor channels in rat sympathetic neurones.
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Conductance and kinetic properties of single nicotinic acetylcholine receptor channels in rat sympathetic neurones.

机译:大鼠交感神经元中单个烟碱乙酰胆碱受体通道的电导和动力学特性。

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摘要

1. The unitary conductance of nicotinic acetylcholine (ACh) receptor channels in rat sympathetic neurones has been studied. Conductance estimates varied from 26-48 pS with a mean of 36.8 pS in 1 mM-Ca2+. The main conductance level varied from patch to patch and the presence (or absence) of additional conductance levels also varied. 2. The channels showed large open channel noise and experiments with 300 mM-NaCl in the patch pipette substantially increased the open channel noise. The appearance of detectable step-like transitions within this noise strongly suggested the existence of closely spaced discrete levels. 3. Removal of divalent cations from the external solution increased the unitary channel conductance. Altering the main permeant ion in divalent-free solutions gave the following conductance sequence: K+ (93 pS) greater than Cs+ (61 pS) greater than Na+ (51 pS) greater than Li+(23 pS). 4. Replacement of Na+ by Cs+ in the external solution considerably reduced the current evoked by ACh in whole-cell recordings and the channel-opening frequency in outside-out patches. 5. The kinetic properties of channels activated by ACh and 1,1-dimethyl-4-phenylpiperazinium iodide (DMPP) were also studied. At low concentrations of ACh and DMPP the gap distributions were complex and best fitted by the sum of four exponential components. Individual activations (bursts) were interrupted by the two shortest closed periods the briefer of which had time constants of 36 microseconds for ACh and 67 microseconds for DMPP. 6. The distribution of burst lengths had two components for each agonist, each component making up about 50% of the total area under the distribution. For ACh, the time constant of the longer component (12.2 ms) was similar to the decay time constant of excitatory postsynaptic potentials (EPSCs) at similar temperature and potential. For DMPP the time constant of the longer component was 17.6 ms. 7. The relative number of brief gaps per long burst was much larger for ACh than for DMPP. Therefore the corrected mean open time for ACh (0.86 ms) was much shorter than that for DMPP (2.3 ms). 8. In terms of receptor mechanism, the values of the channel opening equilibrium constant (beta/alpha) estimated from these numbers (ACh, 23; DMPP, 25) suggest that both agonists are efficaceous. 9. DMPP is a potent blocker of the channel with an equilibrium dissociation constant (KB) of around 50 microM and blockage gaps of around 1 ms duration. ACh also blocks the channel but with a higher KB of around 470 microM.(ABSTRACT TRUNCATED AT 400 WORDS)
机译:1.研究了大鼠交感神经元中烟碱乙酰胆碱(ACh)受体通道的单位电导。在1 mM-Ca2 +中,电导估计值范围为26-48 pS,平均值为36.8 pS。各个贴片的主要电导水平各不相同,其他电导水平的存在(或不存在)也各不相同。 2.通道显示出很大的明渠噪声,在贴片移液器中使用300 mM-NaCl进行的实验大大增加了明渠噪声。在此噪声中可检测到的阶梯状跃迁的出现强烈表明存在紧密间隔的离散电平。 3.从外部溶液中去除二价阳离子增加了单一通道电导。在无二价溶液中改变主要渗透离子给出了以下电导序列:K +(93 pS)大于Cs +(61 pS)大于Na +(51 pS)大于Li +(23 pS)。 4.在外部溶液中用Cs +代替Na +大大减少了ACh在全细胞记录中引起的电流以及在外而外的贴片中的通道开放频率。 5.还研究了ACh和1,1-二甲基-4-苯基哌嗪碘化物(DMPP)激活的通道的动力学特性。在低浓度的ACh和DMPP中,间隙分布很复杂,并且最适合四个指数成分的总和。单个激活(爆发)被两个最短的关闭周期打断,最短的关闭周期的ACh的时间常数为36微秒,DMPP的时间常数为67微秒。 6.每个激动剂的爆发长度分布具有两个成分,每个成分约占分布下总面积的50%。对于乙酰胆碱,较长成分的时间常数(12.2毫秒)类似于在相似温度和电位下的兴奋性突触后电位(EPSC)的衰减时间常数。对于DMPP,较长组件的时间常数为17.6 ms。 7.对于ACh,每长脉冲的短暂间隙的相对数量要比DMPP大得多。因此,校正后的ACh平均打开时间(0.86 ms)比DMPP(2.3 ms)短得多。 8.就受体机制而言,从这些数字(ACh,23; DMPP,25)估计的通道开放平衡常数(β/α)值表明这两种激动剂都是有效的。 9. DMPP是一种有效的通道阻滞剂,其平衡解离常数(KB)约为50 microM,阻塞间隙约为1 ms。 ACh还阻止了该通道,但具有约470 microM的较高KB。(抽象截断为400字)

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