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首页> 外文期刊>Scientific reports. >Differential effects of spinal motor neuron-derived and skeletal muscle-derived Rspo2 on acetylcholine receptor clustering at the neuromuscular junction
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Differential effects of spinal motor neuron-derived and skeletal muscle-derived Rspo2 on acetylcholine receptor clustering at the neuromuscular junction

机译:神经肌肉交界处脊柱运动神经元衍生和骨髓肌肉衍生RspO2对乙酰胆碱受体聚类的差异影响

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摘要

We recently reported that R-spondin 2 (Rspo2), a secreted activator of Wnt/β-catenin signaling, promotes acetylcholine receptor (AChR) clustering and neuromuscular junction (NMJ) formation via its receptor, Lgr5. Rspo2 is expressed highly in spinal motor neurons (SMNs) and marginally in the skeletal muscle, but the origin of Rspo2 at the NMJ remains elusive. We rescued Rspo2 -deficient ( Rspo2 ?/?) mice by specifically expressing Rspo2 in the skeletal muscle and SMNs. SMN-specific Rspo2 mitigated or over-corrected abnormal features of the NMJs and AChR clusters observed in Rspo2 ?/? mice including (i) abnormal broadening of enlarged AChR clusters, (ii) three of six abnormal ultrastructural features, and (iii) abnormal expression of nine genes in SMNs and the diaphragm. In contrast, muscle-specific Rspo2 normalized all six abnormal ultrastructural features, but it had no effect on AChR clustering and NMJ formation at the light microscopy level or on abnormal gene expression in SMNs and the diaphragm. These results suggest that SMN-derived Rspo2 plays a major role in AChR clustering and NMJ formation in the postsynaptic region, and muscle-derived Rspo2 also plays a substantial role in juxtaposition of the active zones and synaptic folds.
机译:我们最近报道,R-Spondin 2(RSPO 2)是通过其受体LGR5促进乙酰胆碱受体(ACHR)受体(ACHR)聚类和神经肌肉结(NMJ)的形成。 RSPO2在脊柱运动神经元(SMNS)中高度表达,骨骼肌略微表达,但NMJ的RSPO2起源仍然难以捉摸。我们通过在骨骼肌和SMN中特异性表达RSPO 2来拯救RSPO2 -DEFIST(RSPO2 β/α/α/α/β)小鼠。在RSPO2 α/α/α/α/α/α/α/α/α/α/α/ sup>小鼠中观察到的SMN特异性的rspo2的衰减或过度校正的异常特征,包括(i)扩大扩大的ACHR簇,(ii)六个异常超微结构的三种SMN和隔膜中九种基因的特征和(III)异常表达。相比之下,肌肉特异性RSPO2归一化所有六种异常超微结构特征,但它对在光学显微镜水平或SMN和隔膜中的异常基因表达上没有影响ACHR聚类和NMJ形成。这些结果表明,SMN衍生的RSPO2在ACHR聚类中发挥着重要作用,并且在突触后区域中的NMJ形成,肌肉衍生的RSPO2也在活性区的并置和突触折叠中起着重要作用。

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