Literature DB >> 18278041

Retrograde regulation of motoneuron differentiation by muscle beta-catenin.

Xiao-Ming Li1, Xian-Ping Dong, Shi-Wen Luo, Bin Zhang, Dae-Hoon Lee, Annie K L Ting, Hannah Neiswender, Chang-Hoon Kim, Ezekiel Carpenter-Hyland, Tian-Ming Gao, Wen-Cheng Xiong, Lin Mei.   

Abstract

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.

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Year:  2008        PMID: 18278041     DOI: 10.1038/nn2053

Source DB:  PubMed          Journal:  Nat Neurosci        ISSN: 1097-6256            Impact factor:   24.884


  72 in total

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