Grinnell A D
Department of Physiology, Jerry Lewis Neuromuscular Research Center, University of California, Los Angeles, School of Medicine, USA.
Physiol Rev. 1995 Oct;75(4):789-834. doi: 10.1152/physrev.1995.75.4.789.
Neuromuscular connections have long served as models of synaptic structure and function. They also provide illuminating insights into the dynamic cell-cell interactions governing synaptogenesis, neuromuscular differentiation, and the maintenance of effective function. This paper reviews recent advances in our understanding of the regulatory and inductive interactions involved in motor axon pathfinding, target recognition, bidirectional control of gene expression during synapse formation, motoneuron cell death, terminal rearrangement, and the ongoing remodeling of synaptic number, structure, and function to adjust to growth and changes in use.
神经肌肉连接长期以来一直是突触结构和功能的模型。它们还为支配突触形成、神经肌肉分化以及有效功能维持的动态细胞间相互作用提供了具有启发性的见解。本文综述了我们在理解运动轴突寻路、靶标识别、突触形成过程中基因表达的双向控制、运动神经元细胞死亡、终末重排以及突触数量、结构和功能的持续重塑以适应生长和使用变化等方面的调节和诱导相互作用的最新进展。