Dai Z, Peng H B
Department of Cell Biology and Anatomy and Curriculum in Neurobiology, University of North Carolina, Chapel Hill 27599.
Neuron. 1993 May;10(5):827-37. doi: 10.1016/0896-6273(93)90199-2.
Nerve-muscle cocultures were used to study the relationship between neuronal Ca2+ level and the earliest nerve-muscle interaction. Xenopus spinal cord neurons were loaded with Ca2+ indicators and monitored by digital video microscopy as a myoball was manipulated into contact with it. Transmitter release was measured from the myoball by whole-cell recording. We observed a 1.5- to 6-fold increase in Ca2+ level in the neurite upon contact with a myoball. Fifty percent of the pairs showing Ca2+ elevation were also positive for neurotransmission. This Ca2+ rise was suppressed by lifting away the myoball, by Ca(2+)-free solution, or by suramin, a polyanionic compound that interferes with cell surface receptors. This suppression was accompanied by a reduction in transmitter release. The specificity of the nerve-muscle contact-induced Ca2+ rise was shown by its absence upon neuron-neuron contact. Naturally formed nerve-muscle contacts also showed an elevation in presynaptic Ca2+ level. Thus, this elevation appears to be a physiological step in the early stage of synaptogenesis and is likely mediated by muscle-derived molecules.
神经 - 肌肉共培养用于研究神经元钙离子水平与最早的神经 - 肌肉相互作用之间的关系。将非洲爪蟾脊髓神经元加载钙离子指示剂,并在将肌球与神经元接触时通过数字视频显微镜进行监测。通过全细胞记录测量肌球释放的递质。我们观察到,与肌球接触后,神经突中的钙离子水平增加了1.5至6倍。显示钙离子升高的配对中,有50%在神经传递方面也呈阳性。通过移开肌球、用无钙溶液或用苏拉明(一种干扰细胞表面受体的聚阴离子化合物)可抑制这种钙离子升高。这种抑制伴随着递质释放的减少。神经元 - 神经元接触时未出现神经 - 肌肉接触诱导的钙离子升高,这表明了神经 - 肌肉接触诱导的钙离子升高的特异性。自然形成的神经 - 肌肉接触也显示突触前钙离子水平升高。因此,这种升高似乎是突触形成早期的一个生理步骤,并且可能由肌肉衍生的分子介导。