首页> 美国卫生研究院文献>Physiological Reports >α‐Conotoxin M1 (CTx) blocks αδ binding sites of adult nicotinic receptors while ACh binding at αε sites elicits only small and short quantal synaptic currents
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α‐Conotoxin M1 (CTx) blocks αδ binding sites of adult nicotinic receptors while ACh binding at αε sites elicits only small and short quantal synaptic currents

机译:α-芋螺毒素M1(CTx)阻断成年烟碱受体的αδ结合位点而在αε位点的ACh结合仅引起小的和短的量子突触电流。

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摘要

In ‘embryonic’ nicotinic receptors, low CTx concentrations are known to block only the αδ binding site, whereas binding of ACh at the αγ‐site elicits short single channel openings and short bursts. In adult muscles the αγ‐ is replaced by the αε‐site. Quantal EPSCs (qEPSCs) were elicited in adult muscles by depolarization pulses and recorded through a perfused macropatch electrode. One to 200 nmol L−1 CTx reduced amplitudes and decay time constants of qEPSCs, but increased their rise times. CTx block at the αδ binding sites was incomplete: The qEPSCs still contained long bursts from not yet blocked receptors, whereas their average decay time constants were reduced by a short burst component generated by ACh binding to the αε‐site. Two nanomolar CTx applied for 3 h reduced the amplitudes of qEPSCs to less than half with a constant slope. The equilibrium concentration of the block is below 1 nmol L−1 and lower than that of embryonic receptors. CTx‐block increased in proportion to CTx concentrations (average rate 2 >× 104 s−1·mol−1 L). Thus, the reactions of ‘embryonic’ and of adult nicotinic receptors to block by CTx are qualitatively the same. – The study of the effects of higher CTx concentrations or of longer periods of application of CTx was limited by presynaptic effects of CTx. Even low CTx concentrations severely reduced the release of quanta by activating presynaptic M2 receptors at a maximal rate of 6 >× 105 s−1·mol−1 L. When this dominant inhibition was prevented by blocking the M2 receptors with methoctramine, activation of M1 receptors was unmasked and facilitated release.
机译:在“胚胎”烟碱样受体中,已知低CTx浓度只能阻断αδ结合位点,而ACh在αγ位的结合会引起短的单通道开放和短爆发。在成年肌肉中,αγ替换为αε部位。通过去极化脉冲在成年肌肉中引发量子EPSC(qEPSC),并通过灌注的大补丁电极进行记录。一到200 nmol L −1 CTx降低了qEPSC的幅度和衰减时间常数,但增加了它们的上升时间。 αδ结合位点的CTx阻滞不完全:qEPSC仍包含来自尚未受阻受体的长脉冲,而其平均衰减时间常数因ACh结合至αε位而产生的短脉冲分量而降低。两次纳摩尔CTx施加3 h,以恒定的斜率将qEPSC的振幅减小到小于一半。该嵌段的平衡浓度低于1 nmol L -1 ,低于胚胎受体。 CTx阻滞与CTx浓度成正比(平均速率2 >× 10 4 s -1 ·mol -1 L)。因此,“胚胎”和成人烟碱样受体被CTx阻断的反应在质量上是相同的。 –较高的CTx浓度或较长时间使用CTx的影响的研究受到CTx突触前影响的限制。甚至低的CTx浓度也会通过最大以6 >× 10 5 s −1 ·mol的速率激活突触前M2受体而严重降低量子的释放。 -1 L。当通过用甲辛卡明阻断M2受体来阻止这种主要抑制作用时,M1受体的激活被掩盖并促进释放。

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