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在突触形成过程中,特定运动神经元中分泌能力的靶标依赖性诱导。

Target-dependent induction of secretory capabilities in an identified motoneuron during synaptogenesis.

作者信息

Zoran M J, Doyle R T, Haydon P G

机构信息

Department of Zoology, Iowa State University, Ames 50011.

出版信息

Dev Biol. 1990 Mar;138(1):202-13. doi: 10.1016/0012-1606(90)90190-t.

Abstract

Cholinergic neurons isolated from the buccal ganglia of Helisoma were plated into cell culture with a variety of defined target cells to study the specificity of synaptogenesis. Motoneuron B19 selectively formed chemical connections with single dissociated muscle fibers derived from its appropriate target, the supralateral radular tensor (SLT) muscle. B19 did not form such connections with novel neuronal targets. In contrast to neuron B19, cholinergic neuron B5 nonselectively formed chemical connections with novel muscle and neuronal targets. Target cells were micromanipulated into contact with presynaptic neurons to examine the latent period until the onset of functional synaptic transmission. Neuron B5 formed chemical connections within the first minutes of contact with ACh-sensitive neurons and muscle while B19 required sustained periods of muscle-specific contact to induce the acquisition of a functional excitation-secretion coupling mechanism. These different latent periods from the onset of target contact suggest that neuron B5 acquires presynaptic secretory function before target contact, while B19 must receive a specific signal(s) from its appropriate target to induce the transformation of its terminal into a secretory state.

摘要

从耳萝卜螺的颊神经节分离出的胆碱能神经元被接种到细胞培养物中,并与多种特定的靶细胞共同培养,以研究突触发生的特异性。运动神经元B19选择性地与源自其合适靶标——上侧齿舌张量(SLT)肌肉的单个解离肌纤维形成化学连接。B19不会与新的神经元靶标形成这种连接。与神经元B19不同,胆碱能神经元B5非选择性地与新的肌肉和神经元靶标形成化学连接。将靶细胞通过显微操作与突触前神经元接触,以检查直到功能性突触传递开始的潜伏期。神经元B5在与乙酰胆碱敏感神经元和肌肉接触的最初几分钟内就形成了化学连接,而B19需要持续的肌肉特异性接触才能诱导获得功能性兴奋-分泌偶联机制。从靶标接触开始的这些不同潜伏期表明,神经元B5在靶标接触之前就获得了突触前分泌功能,而B19必须从其合适的靶标接收特定信号,以诱导其终末转化为分泌状态。

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