Farchi Noa, Soreq Hermona, Hochner Binyamin
Department of Neurobiology, Institute of Life Sciences, Hebrew University of Jerusalem, Israel 91904.
J Physiol. 2003 Jan 1;546(Pt 1):165-73. doi: 10.1113/jphysiol.2002.030841.
Chronic overexpression of the acetylcholine-hydrolysing enzyme acetylcholinesterase (AChE) is a notable consequence of exposure to anticholinesterase drugs or poisons. However, the physiological consequences for the resultant neuromuscular disfunction have not yet been carefully analysed. Here we report detailed dissection of the different components of neuromuscular function in transgenic mice previously shown to display motor fatigue and altered muscle morphology as a consequence of neuronal overexpression of AChE-S, the synaptic AChE variant. Transgenic diaphragm muscle presented exaggerated fatigue as a combined consequence of neurotransmission fading and muscle mechanical malfunctioning. In a tetanic stimulation protocol, transgenic muscles rapidly fatigued to a larger extent than wild-type muscles, when stimulated either directly or via the phrenic nerve. AChE overexpression involved moderate but significant aberrations of synaptic transmission with higher quantal content (measured at 0.2 mM Ca(2+), 2.3 mM Mg(2+)). Furthermore, treatment with the anti-cholinesterase physostigmine revealed a higher amplitude and half-decay time of the transgenic quantal postsynaptic response. Our observations imply that elevated levels of neuronal AChE-S are expected to cause muscle exhaustion due to a combination of modest, multilevelled aberrations in synaptic transmission, muscle function and morphology.
乙酰胆碱水解酶(AChE)的慢性过表达是接触抗胆碱酯酶药物或毒物的一个显著后果。然而,由此产生的神经肌肉功能障碍的生理后果尚未得到仔细分析。在此,我们报告了对转基因小鼠神经肌肉功能不同组成部分的详细剖析,这些小鼠先前已显示出由于突触型AChE变体AChE-S在神经元中过表达而出现运动疲劳和肌肉形态改变。转基因膈肌表现出过度疲劳,这是神经传递衰退和肌肉机械功能障碍共同作用的结果。在强直刺激实验中,当直接或通过膈神经刺激时,转基因肌肉比野生型肌肉更快且更严重地疲劳。AChE过表达涉及突触传递的中度但显著异常,量子含量更高(在0.2 mM Ca(2+)、2.3 mM Mg(2+)条件下测量)。此外,用抗胆碱酯酶毒扁豆碱处理后,转基因量子突触后反应的幅度更高,半衰期更长。我们的观察结果表明,由于突触传递、肌肉功能和形态方面适度的、多层次的异常共同作用,神经元AChE-S水平升高预计会导致肌肉疲劳。