Nick T A, Ribera A B
Department of Physiology and Biophysics, The University of Colorado Health Sciences Center, Denver, Colorado 80262, USA.
Nat Neurosci. 2000 Feb;3(2):142-9. doi: 10.1038/72082.
Synaptic activity modulates synaptic efficacy and is important in learning and development. Here we show that development of excitability in presynaptic motor neurons required synaptic activation of postsynaptic muscle cells. Synaptic blockade broadened action potentials and decreased repetitive firing of presynaptic neurons. Consistent with these findings, synaptic blockade also decreased potassium-current density in the presynaptic cell. Application of neurotrophin-3, but not related neurotrophins, prevented these changes. Recordings from patches of somatic membrane indicated that modifications of presynaptic potassium and sodium currents occurred in a remote, nonsynaptic compartment. Thus, activity-dependent postsynaptic signals modulated presynaptic excitability, potentially regulating transmission at all synapses of the presynaptic cell.
突触活动调节突触效能,在学习和发育过程中至关重要。在此我们表明,突触前运动神经元兴奋性的发育需要突触后肌肉细胞的突触激活。突触阻断会使动作电位变宽,并降低突触前神经元的重复放电。与这些发现一致,突触阻断也会降低突触前细胞中的钾电流密度。应用神经营养因子-3而非相关神经营养因子可防止这些变化。对体细胞膜片的记录表明,突触前钾电流和钠电流的改变发生在一个遥远的、非突触的区域。因此,依赖活动的突触后信号调节突触前兴奋性,可能会调节突触前细胞所有突触处的传递。