Hossain Md Faruk, Popsuj Sydney, Vitrinel Burcu, Kaplan Nicole A, Stolfi Alberto, Christiaen Lionel, Ruggiu Matteo
Laboratory of RNA Biology & Molecular Neuroscience, Department of Biological Sciences, St. John's University, Queens, New York, United States of America.
School of Biological Sciences, Georgia Institute of Technology, Atlanta, Georgia, United States of America.
PLoS Biol. 2025 Sep 12;23(9):e3003392. doi: 10.1371/journal.pbio.3003392. eCollection 2025 Sep.
In mammals, neuromuscular synapses rely on clustering of acetylcholine receptors (AChRs) in the muscle plasma membrane, ensuring optimal stimulation by motor neuron-released acetylcholine neurotransmitter. This clustering depends on a complex pathway based on alternative splicing of Agrin pre-mRNAs by the RNA-binding proteins Nova1/2. Neuron-specific expression of Nova1/2 ensures the inclusion of small "Z" exons in Agrin, resulting in a neural-specific form of this extracellular proteoglycan carrying a short peptide motif that is required for binding to Lrp4 receptors on the muscle side, which in turn stimulate AChR clustering. Here we show that this intricate pathway is remarkably conserved in Ciona robusta, a non-vertebrate chordate in the tunicate subphylum. We use in vivo tissue-specific CRISPR/Cas9-mediated mutagenesis and heterologous "minigene" alternative splicing assays in cultured mammalian cells to show that Ciona Nova is also necessary and sufficient for Agrin Z exon inclusion and downstream Lrp4-mediated AChR clustering. We present evidence that, although the overall pathway is well conserved, there are unexpected differences in Nova structure-function between Ciona and mammals. We further show that, in Ciona motor neurons, the transcription factor Ebf is a key activator of Nova expression, thus ultimately linking this RNA switch to a conserved, motor neuron-specific transcriptional regulatory network.
在哺乳动物中,神经肌肉突触依赖于肌肉质膜中乙酰胆碱受体(AChRs)的聚集,以确保运动神经元释放的乙酰胆碱神经递质能实现最佳刺激。这种聚集依赖于一条复杂的途径,该途径基于RNA结合蛋白Nova1/2对聚集蛋白聚糖(Agrin)前体mRNA的可变剪接。Nova1/2的神经元特异性表达确保了Agrin中包含小的“Z”外显子,从而产生这种细胞外蛋白聚糖的神经特异性形式,其携带一个与肌肉侧Lrp4受体结合所需的短肽基序,进而刺激AChR聚集。在这里,我们表明,在被囊亚门的无脊椎脊索动物粗壮海鞘中,这条复杂的途径也非常保守。我们使用体内组织特异性CRISPR/Cas9介导的诱变和在培养的哺乳动物细胞中的异源“小基因”可变剪接试验,来表明海鞘Nova对于Agrin Z外显子的包含以及下游Lrp4介导的AChR聚集也是必要且充分的。我们提供的证据表明,尽管整个途径保守性良好,但海鞘和哺乳动物在Nova结构功能方面存在意想不到的差异。我们进一步表明,在海鞘运动神经元中,转录因子Ebf是Nova表达的关键激活因子,从而最终将这个RNA开关与一个保守的、运动神经元特异性转录调控网络联系起来。