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Influence of phospholipase C on some electrical properties of the skeletal muscle membrane

机译:磷脂酶C对骨骼肌膜某些电学性质的影响

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摘要

1. A study was made of the effects of phospholipase C (PhC) on the resting membrane potential, input resistance, action potential and acetylcholine sensitivity of innervated and chronically denervated single muscle fibres of the rat.2. In doses higher than 1·5 μg/ml. PhC significantly increased the ionic permeability of the muscle membrane (indicated by a fall in input resistance) and reduced the resting membrane potential of innervated fibres. The `fast' or `white' extensor digitorum longus muscle was the most sensitive and the `slow' or `red' soleus the least sensitive muscle. A similar difference was observed among `fast' and `slow' muscles of the chicken, the posterior latissimus dorsi being far more sensitive than the `slow' anterior latissimus dorsi muscle. Chronically denervated muscles were more resistant to these actions of PhC than innervated ones but even after denervation the `fast' muscles remained more sensitive than the `slow' muscles.3. The action-potential generating mechanism in the `fast' and `slow' muscle was completely and irreversibly blocked by 1·5 μg/ml. of PhC within 1 hr. Furthermore the innervated and chronically denervated muscles were equally sensitive to this effect of PhC. The enzyme caused a gradual increase in the threshold for excitation, reduction in the rate of rise and the amplitude of the action potential. The input resistance and the resting membrane potential were not reduced by this dose of PhC.4. Acetylcholine sensitivity of chronically denervated muscles was not affected by PhC in doses that abolished the electrical excitability of the membrane. When PhC reduced the input resistance and the resting membrane potential a decrease was also observed in the response to applied acetylcholine.5. The results suggest that PhC by acting at the polar heads of membrane phospholipids interferes with the ionic carrier mechanism which generates the action potential. The differences in sensitivity between `fast' and `slow' muscles and between innervated and chronically denervated ones are tentatively explained on the basis of heterologous membrane phospholipids and/or variations in their stereochemical arrangement.
机译:1.研究了磷脂酶C(PhC)对大鼠神经支配和慢性神经支配的单肌纤维的静息膜电位,输入阻力,动作电位和乙酰胆碱敏感性的影响。剂量高于1·5μg/ ml。 PhC显着增加了肌肉膜的离子渗透性(由输入电阻的降低指示),并降低了神经支配纤维的静息膜电位。 “快速”或“白色”指趾长肌是最敏感的,而“慢”或“红色”比目鱼肌则最不敏感。在鸡的“快”和“慢”肌肉之间观察到类似的差异,后背阔肌比“慢”背阔肌更敏感。与神经支配的肌肉相比,慢性神经支配的肌肉对PhC的抵抗力更高,但是即使神经支配后,“快”的肌肉也比“慢”的肌肉更敏感。 “快”和“慢”肌肉中的动作电位生成机制被完全不可逆地阻止了1·5μg/ ml。 1小时之内此外,神经支配和慢性神经支配的肌肉对PhC的这种敏感性同样敏感。该酶引起激发的阈值逐渐增加,上升速率的降低和动作电位的幅度降低。 PhC.4剂量不会降低输入电阻和静止膜电位。慢性失神经肌肉的乙酰胆碱敏感性不受剂量的PhC的影响,该剂量可以消除膜的电兴奋性。当PhC降低输入电阻和静息膜电位时,对施加的乙酰胆碱的响应也降低了。5。结果表明,PhC通过作用于膜磷脂的极性头来干扰离子载体机理,从而产生作用电位。根据异源膜磷脂和/或其立体化学排列的变化,初步解释了“快”和“慢”的肌肉以及神经支配和慢性神经支配的敏感性之间的差异。

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