Li Xiao-Ming, Dong Xian-Ping, Luo Shi-Wen, Zhang Bin, Lee Dae-Hoon, Ting Annie K L, Neiswender Hannah, Kim Chang-Hoon, Carpenter-Hyland Ezekiel, Gao Tian-Ming, Xiong Wen-Cheng, Mei Lin
Program of Developmental Neurobiology, Institute of Molecular Medicine and Genetics, Department of Neurology, Medical College of Georgia, 1120 15th Street, Augusta, Georgia 30912, USA.
Nat Neurosci. 2008 Mar;11(3):262-8. doi: 10.1038/nn2053. Epub 2008 Feb 17.
Synapse formation requires proper interaction between pre- and postsynaptic cells. In anterograde signaling, neurons release factors to guide postsynaptic differentiation. However, less is known about how postsynaptic targets retrogradely regulate presynaptic differentiation or function. We found that muscle-specific conditional knockout of beta-catenin (Ctnnb1, also known as beta-cat) in mice caused both morphologic and functional defects in motoneuron terminals of neuromuscular junctions (NMJs). In the absence of muscle beta-catenin, acetylcholine receptor clusters were increased in size and distributed throughout a wider region. Primary nerve branches were mislocated, whereas secondary or intramuscular nerve branches were elongated and reduced in number. Both spontaneous and evoked neurotransmitter release was reduced at the mutant NMJs. Furthermore, short-term plasticity and calcium sensitivity of neurotransmitter release were compromised in beta-catenin-deficient muscle. In contrast, the NMJ was normal in morphology and function in motoneuron-specific beta-catenin-deficient mice. Taken together, these observations indicate a role for muscle beta-catenin in presynaptic differentiation and function, identifying a previously unknown retrograde signaling in the synapse formation and synaptic plasticity.
突触形成需要突触前和突触后细胞之间的适当相互作用。在前向信号传导中,神经元释放因子来引导突触后分化。然而,关于突触后靶点如何逆向调节突触前分化或功能,人们了解得较少。我们发现,小鼠中肌肉特异性条件性敲除β-连环蛋白(Ctnnb1,也称为β-cat)会导致神经肌肉接头(NMJ)运动神经元终末出现形态和功能缺陷。在缺乏肌肉β-连环蛋白的情况下,乙酰胆碱受体簇的大小增加,并分布在更广泛的区域。初级神经分支位置错误,而次级或肌内神经分支延长且数量减少。在突变的NMJ处,自发和诱发的神经递质释放均减少。此外,β-连环蛋白缺陷型肌肉中神经递质释放的短期可塑性和钙敏感性受损。相比之下,运动神经元特异性β-连环蛋白缺陷型小鼠的NMJ在形态和功能上是正常的。综上所述,这些观察结果表明肌肉β-连环蛋白在突触前分化和功能中起作用,确定了突触形成和突触可塑性中一种以前未知的逆向信号传导。