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Recombinant nicotinic receptors, expressed in Xenopus oocytes, do not resemble native rat sympathetic ganglion receptors in single-channel behaviour.

机译:在非洲爪蟾卵母细胞中表达的重组烟碱样受体与单通道行为中的天然大鼠交感神经节受体不相似。

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摘要

1. In order to establish the subunit composition of neuronal nicotinic receptors in rat superior cervical ganglia (SCG), their single-channel properties were compared with those of recombinant receptors expressed in Xenopus oocytes, using outside-out excised patch recording. 2. The mean main conductance of SCG channels from adult and 1-day-old rats was 34.8 and 36.6 pS, respectively. Less frequent openings to lower conductances occurred both as isolated bursts and as events connected to the main level by direct transitions. There was considerable interpatch variability in the values of the lower conductances. 3. Nicotinic receptors from oocytes expressing alpha3beta4 and alpha4beta4 subunits had chord conductances lower than that of SCG neurones (22 pS for alpha3beta4 and 29 pS for alpha4beta4). 4. Prolonged recording from both native and recombinant channels was precluded by 'run-down', i.e. channel activity could be elicited for only a few minutes after excision. Nevertheless, SCG channel openings were clearly seen to occur as short bursts (slowest component, 38 ms), whereas recombinant channels opened in very prolonged bursts of activity, the major component being the slowest (480 ms). 5. Addition of the alpha5 subunit to the alpha3beta4 pair produced channels with a higher conductance than those observed after injection of the pair alone (24.9 vs. 22 pS), suggesting incorporation of alpha5 into the channel. Addition of the beta2 subunit did not change alpha3beta4 single-channel properties. In one out of fourteen alpha3alpha5beta4 patches, both ganglion-like, high conductance, short burst openings and recombinant-type, low conductance, slow burst openings were observed. 6. Channels produced by expression in Xenopus oocytes of neuronal nicotinic subunits present in rat SCG as a rule differ from native ganglion receptors in single-channel conductance and gross kinetics. While it is possible that an essential nicotinic subunit remains to be cloned, it is perhaps more likely that oocytes either cannot assemble neuronal nicotinic subunits efficiently into channels with the correct composition and stoichiometry, or that they produce post-translational channel modifications which differ from those of mammalian neurones.
机译:1.为了建立大鼠上颈神经节(SCG)中神经元烟碱样受体的亚基组成,使用外切法将其单通道性质与非洲爪蟾卵母细胞中表达的重组受体进行比较。 2.成年和1日龄大鼠的SCG通道的平均主要电导分别为34.8和36.6 pS。较低频率的电导较低频率的开放既发生在孤立的爆发中,又发生在通过直接过渡连接到主层的事件中。较低电导的值之间存在很大的补丁间变化。 3.来自表达α3β4和α4β4亚基的卵母细胞的烟碱受体的弦电导率比SCG神经元低(α3β4为22 pS,α4β4为29 pS)。 4.“耗尽”排除了来自天然和重组通道的长时间记录,即在切除后仅几分钟内可引起通道活性。但是,可以清楚地看到SCG通道的打开是短脉冲(最慢的分量,38毫秒),而重组通道以非常长的脉冲爆发打开,主要的分量是最慢的(480毫秒)。 5.将alpha5亚基添加到alpha3beta4对中产生的通道具有比单独注入该对后观察到的通道更高的电导率(24.9 vs. 22 pS),表明将alpha5并入通道中。 beta2亚基的添加不会更改alpha3beta4单通​​道属性。在14个alpha3alpha5beta4补丁中,有1个既观察到神经节样电导率高,短爆发开口,又观察到重组类型,低电导率,缓慢爆发开口。 6.通过在大鼠SCG中存在的神经元烟碱亚基在非洲爪蟾卵母细胞中表达产生的通道通常在单通道电导和总体动力学方面不同于天然神经节受体。尽管可能需要克隆必要的烟碱亚基,但卵母细胞可能更有可能无法有效地将神经元烟碱亚基组装成具有正确组成和化学计量的通道,或者它们产生的翻译后通道修饰不同于那些哺乳动物神经元。

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