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大鼠肌肉神经肌肉突触处通道特性的神经营养控制。

Neurotrophic control of channel properties at neuromuscular synapses of rat muscle.

作者信息

Brenner H R, Sakmann B

出版信息

J Physiol. 1983 Apr;337:159-71. doi: 10.1113/jphysiol.1983.sp014617.

Abstract
  1. Ectopic neuromuscular synapses formed when the fibular nerve was implanted into the proximal part of rat soleus muscle and the soleus nerve was cut. The gating properties of acetylcholine (ACh) receptor channels in the newly formed ectopic and in the denervated original end-plates were examined at various stages of ectopic synapse formation.2. At ectopic end-plates the apparent mean open time of ACh receptor channels changes during synaptic development. Channels in immature ectopic end-plates, examined 1 week after cutting the soleus nerve, have apparent mean open times of approximately 4 ms (at -70 mV, 22 degrees C), similar to those of the extrasynaptic ACh receptor channels of completely denervated fibres. The channel gating of mature ectopic end-plates, examined 3-7 weeks after nerve section, is characterized by a mean open time of approximately 1 ms and resembles that found in normal end-plates of adult fibres.3. The conversion of end-plate channel gating occurs during the second and third week of synapse formation. During this period two discrete classes of channels with different gating behaviour are present in the ectopic end-plate.4. Examination of ectopic end-plates in the electron microscope reveals that junctional folds begin to appear in the subsynaptic membrane during the period of channel conversion.5. At the denervated original end-plates of ectopically innervated fibres the apparent mean open time of ACh receptor channels remains similar to that of normally innervated end-plates. Original end-plates retain the normal synaptic class of channel for at least 42 days after denervation. At this time, most of the ACh receptors present originally in the membrane have been replaced by newly inserted receptors.6. At former end-plates of completely denervated fibres ACh activates two classes of channels, even when most of the ACh receptors originally present in the end-plate have been replaced by new receptors.7. The results show that during synapse formation a neurally controlled conversion of ACh receptor channels occurs about 2-3 weeks after establishment of the nerve muscle contact. Thereafter end-plate channel properties are independent of neural influences. These observations are consistent with a mechanism of channel conversion whereby the nerve modifies not the ACh receptor channel itself, but another constituent of the end-plate membrane which determines the gating properties of end-plate channels.
摘要
  1. 将腓总神经植入大鼠比目鱼肌近端并切断比目鱼肌神经后,形成了异位神经肌肉突触。在异位突触形成的不同阶段,检测了新形成的异位终板和去神经支配的原始终板中乙酰胆碱(ACh)受体通道的门控特性。

  2. 在异位终板处,ACh受体通道的表观平均开放时间在突触发育过程中发生变化。在切断比目鱼肌神经1周后检测的未成熟异位终板中的通道,其表观平均开放时间约为4毫秒(在-70毫伏、22摄氏度时),与完全去神经支配纤维的突触外ACh受体通道相似。在神经切断后3至7周检测的成熟异位终板的通道门控,其特征是平均开放时间约为1毫秒,类似于成年纤维正常终板中的情况。

  3. 终板通道门控的转变发生在突触形成的第二和第三周。在此期间,异位终板中存在两类具有不同门控行为的离散通道。

  4. 电子显微镜下对异位终板的检查显示,在通道转变期间,突触下膜开始出现连接褶。

  5. 在异位神经支配纤维的去神经支配的原始终板处,ACh受体通道的表观平均开放时间仍与正常神经支配终板的相似。原始终板在去神经支配后至少42天保留正常的突触类通道。此时,最初存在于膜中的大多数ACh受体已被新插入的受体所取代。

  6. 在完全去神经支配纤维的先前终板处,即使终板中最初存在的大多数ACh受体已被新受体取代,ACh仍能激活两类通道。

  7. 结果表明,在突触形成过程中,神经肌肉接触建立后约2至3周发生神经控制的ACh受体通道转变。此后,终板通道特性独立于神经影响。这些观察结果与通道转变机制一致,即神经不是改变ACh受体通道本身,而是改变终板膜的另一种成分,该成分决定终板通道的门控特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e479/1199100/8717bbb49201/jphysiol00662-0173-a.jpg

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