首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Rescuing Z+ agrin splicing in Nova null mice restores synapse formation and unmasks a physiologic defect in motor neuron firing
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Rescuing Z+ agrin splicing in Nova null mice restores synapse formation and unmasks a physiologic defect in motor neuron firing

机译:挽救Nova Nova小鼠中的Z +凝集素剪接可恢复突触形成并掩盖运动神经元放电的生理缺陷

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摘要

Synapse formation at the neuromuscular junction (NMJ) requires an alternatively spliced variant of agrin (Z+ agrin) that is produced only by neurons. Here, we show that Nova1 and Nova2, neuron-specific splicing factors identified as targets in autoimmune motor disease, are essential regulators of Z+ agrin. Nova1/Nova2 double knockout mice are paralyzed and fail to cluster AChRs at the NMJ, and breeding them with transgenic mice constitutively expressing Z+ agrin in motor neurons rescued AChR clustering. Surprisingly, however, these rescued mice remained paralyzed, while electrophysiologic studies demonstrated that the motor axon and synapse were functional-spontaneous and evoked recordings revealed synaptic transmission and muscle contraction. These results point to a proximal defect in motor neuron firing in the absence of Nova and reveal a previously unsuspected role for RNA regulation in the physiologic activation of motor neurons.
机译:在神经肌肉接头(NMJ)处的突触形成需要选择性剪接的凝集素变体(Z + 凝集素),其仅由神经元产生。在这里,我们显示出Nova1和Nova2是Z + 凝集素的重要调节剂,它们被确定为自身免疫性运动疾病的靶标,是神经元特异性剪接因子。 Nova1 / Nova2双敲除小鼠瘫痪,无法在NMJ聚集AChR,并用在运动神经元中拯救性AChR聚集的组成型表达Z + 凝集素的转基因小鼠进行繁殖。然而,令人惊讶的是,这些获救的小鼠仍处于瘫痪状态,而电生理研究表明,运动轴突和突触是功能自发的,诱发的记录显示突触传递和肌肉收缩。这些结果表明在缺少Nova的情况下,运动神经元的放电存在近端缺陷,并揭示了RNA调控在运动神经元的生理激活中先前发挥的作用。

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