Banks Glen B, Fuhrer Christian, Adams Marvin E, Froehner Stanley C
Department of Physiology and Biophysics, University of Washington, Seattle, WA 98195-7290, USA.
J Neurocytol. 2003 Jun-Sep;32(5-8):709-26. doi: 10.1023/B:NEUR.0000020619.24681.2b.
Neuromuscular synapse formation is brought about by a complex bi-directional exchange of information between the innervating motor neuron and its target skeletal muscle fiber. Agrin, a heparin sulfate proteoglycan, is released from the motor nerve terminal to activate its muscle-specific kinase (MuSK) receptor that leads to a second messenger cascade requiring rapsyn to ultimately bring about AChR clustering in the muscle membrane. Rapsyn performs many functions in skeletal muscle. First, rapsyn and AChRs co-target to the postsynatic apparatus. Second, rapsyn may self associate to stabilize and promote AChR clustering. Third, rapsyn is essential for AChR cluster formation. Fourth, rapsyn is required to transduce the agrin-evoked MuSK phosphorylation signal to AChRs. Finally, rapsyn links AChRs to the utrophin-associated complex, which appears to be required for AChR stabilization as well as maturation of the neuromuscular junction. Proteins within the utrophin-associated complex such as alpha-dystrobrevin and alpha-syntrophin are also important for signaling events that affect neuromuscular synapse stability and function. Here we review our current understanding of the role of the postsynaptic-submembrane machinery involving rapsyn and the utrophin-associated complex at the neuromuscular synapse. In addition we briefly review how these studies of the neuromuscular junction relate to GABAergic and glycinergic synapses in the CNS.
神经肌肉突触的形成是由支配运动神经元与其靶骨骼肌纤维之间复杂的双向信息交换所导致的。聚集蛋白聚糖是一种硫酸乙酰肝素蛋白聚糖,从运动神经末梢释放,以激活其肌肉特异性激酶(MuSK)受体,这会引发一个需要rapsyn参与的第二信使级联反应,最终导致乙酰胆碱受体(AChR)在肌膜上聚集。Rapsyn在骨骼肌中发挥多种功能。首先,rapsyn和AChR共同靶向突触后装置。其次,rapsyn可能会自我结合以稳定并促进AChR聚集。第三,rapsyn对AChR簇的形成至关重要。第四,rapsyn是将聚集蛋白聚糖诱发的MuSK磷酸化信号传导至AChR所必需的。最后,rapsyn将AChR与与肌养蛋白相关的复合物相连,这似乎是AChR稳定以及神经肌肉接头成熟所必需的。与肌养蛋白相关的复合物中的蛋白质,如α - 肌营养不良蛋白和α - 肌营养不良素相关蛋白,对于影响神经肌肉突触稳定性和功能的信号事件也很重要。在此,我们综述了目前对神经肌肉突触处涉及rapsyn和与肌养蛋白相关的复合物的突触后膜下机制作用的理解。此外,我们还简要回顾了这些神经肌肉接头的研究与中枢神经系统中γ - 氨基丁酸能和甘氨酸能突触的关系。