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半胱氨酸对体外镉诱导的骨骼肌神经肌肉传递阻滞的逆转作用。

Reversal by cysteine of the cadmium-induced block of skeletal neuromuscular transmission in vitro.

作者信息

Braga M F, Rowan E G

机构信息

Department of Physiology and Pharmacology, Strathcylde Institute for Drug Research, University of Strathclyde, Glasgow.

出版信息

Br J Pharmacol. 1992 Sep;107(1):95-100. doi: 10.1111/j.1476-5381.1992.tb14468.x.

Abstract
  1. Neuromuscular transmission in isolated nerve-muscle preparations was blocked by exposure to Cd2+ for less than 30 min or more than 2 h. The abilities of cysteine, Ca2+ or 3,4-diaminopyridine (3,4-DAP) to reverse the blockade induced by Cd2+ were studied. 2. On the mouse hemidiaphragm preparation, exposure to Cd2+ (10 microM) for 10 to 20 min induced a blockade which was easily reversed by increasing the extracellular Ca2+ concentration (5-10 mM) or by 3,4-DAP (100 microM). Exposure to Cd2+ (3-10 microM) for over 2 h led to a blockade which was not reversed by Ca2+ (5-15 mM) or 3,4-DAP (100 microM). Cysteine (1 mM) was able to reverse completely the blockade induced by both brief and prolonged exposures to Cd2+. 3. In chick biventer cervicis preparations, Cd2+ (100 microM) decreased the twitch height of indirectly stimulated preparations without affecting responses to exogenously applied acetylcholine, carbachol or KCl. Cysteine (1-3 mM) had no appreciable effect on twitch responses to indirect stimulation or to exogenously applied agonists but fully reversed the blockade induced by Cd2+ (100 microM). 4. In mouse triangularis sterni preparations, Cd2+ (1-30 microM) depressed the evoked quantal release of acetylcholine. Concentrations of Cd2+ which completely blocked endplate potentials (e.p.ps) were without significant effect on miniature endplate potential (m.e.p.p.) amplitude and frequency or time constant of decay. Cysteine (1-10 mM) alone had no effect on e.p.ps or m.e.p.ps, but completely reversed the blockade induced by Cd2+.6. In addition to the competitive blocking action of Cd2+ at the prejunctional Ca2+ channels, long exposure to Cd2+ leads to a blockade that is not competitive. This probably involves binding of Cd2+" at an extracellular thiol site on, or close to, voltage-operated Ca2+' channels.
摘要
  1. 在离体神经 - 肌肉标本中,暴露于镉离子(Cd2+)少于30分钟或超过2小时会阻断神经肌肉传递。研究了半胱氨酸、钙离子(Ca2+)或3,4 - 二氨基吡啶(3,4 - DAP)逆转Cd2+诱导的阻断作用的能力。2. 在小鼠半膈肌标本中,暴露于10微摩尔/升的Cd2+ 10至20分钟会诱导一种阻断作用,通过增加细胞外钙离子浓度(5 - 10毫摩尔/升)或3,4 - DAP(100微摩尔/升)可轻易逆转。暴露于3 - 10微摩尔/升的Cd2+超过2小时会导致一种阻断作用,这种阻断不能被钙离子(5 - 15毫摩尔/升)或3,4 - DAP(100微摩尔/升)逆转。半胱氨酸(1毫摩尔/升)能够完全逆转由短暂和长时间暴露于Cd2+所诱导的阻断作用。3. 在鸡双颈肌标本中,100微摩尔/升的Cd2+降低了间接刺激标本的抽搐高度,而不影响对外源性应用的乙酰胆碱、卡巴胆碱或氯化钾的反应。半胱氨酸(1 - 3毫摩尔/升)对间接刺激或外源性应用激动剂的抽搐反应没有明显影响,但能完全逆转由100微摩尔/升的Cd2+所诱导的阻断作用。4. 在小鼠胸骨三角肌标本中,1 - 30微摩尔/升的Cd2+抑制了乙酰胆碱的诱发量子释放。完全阻断终板电位(e.p.ps)的Cd2+浓度对微小终板电位(m.e.p.p.)的幅度、频率或衰减时间常数没有显著影响。单独的半胱氨酸(1 - 10毫摩尔/升)对e.p.ps或m.e.p.ps没有影响,但能完全逆转由Cd2+所诱导的阻断作用。6. 除了Cd2+在节前钙离子通道的竞争性阻断作用外,长时间暴露于Cd2+会导致一种非竞争性的阻断作用。这可能涉及Cd2+在电压门控钙离子通道上或其附近的细胞外硫醇位点的结合。

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Calcium channels in excitable cell membranes.可兴奋细胞膜上的钙通道。
Annu Rev Physiol. 1983;45:341-58. doi: 10.1146/annurev.ph.45.030183.002013.
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Annu Rev Neurosci. 1981;4:69-125. doi: 10.1146/annurev.ne.04.030181.000441.

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