首页> 外文期刊>Frontiers in Cellular Neuroscience >Muscle Expression of SOD1 G93A Modulates microRNA and mRNA Transcription Pattern Associated with the Myelination Process in the Spinal Cord of Transgenic Mice
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Muscle Expression of SOD1 G93A Modulates microRNA and mRNA Transcription Pattern Associated with the Myelination Process in the Spinal Cord of Transgenic Mice

机译:SOD1 G93A 的肌肉表达调节转基因小鼠脊髓中与髓鞘形成有关的microRNA和mRNA转录模式。

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A crucial system severely affected in several neuromuscular diseases is the loss of effective connection between muscle and nerve, leading to a pathological non-communication between the two tissues. One of the best examples of impaired interplay between muscle and nerve is Amyotrophic Lateral Sclerosis, a neurodegenerative disease characterized by degeneration of motor neurons and muscle atrophy. Increasing evidences suggest that damage to motor neurons is enhanced by alterations in the neighboring non-neuronal cells and indicate that altered skeletal muscle might be the source of signals that impinge motor neuron activity and survival. Here we investigated whether muscle selective expression of SOD1~(G93A)mutant gene modulates mRNAs and miRNAs expression at the level of spinal cord of MLC/SOD1~(G93A)mice. Using a Taqman array, the Affymetrix Mouse Gene 2.0 ST approach and the MiRwalk 2.0 database, which provides information on miRNA and their predicted target genes, we revealed that muscle specific expression of SOD1~(G93A)modulates relevant molecules of the genetic and epigenetic circuitry of myelin homeostasis in spinal cord of transgenic mice. Our study provides insights into the pathophysiological interplay between muscle and nerve and supports the hypothesis that muscle is a source of signals that can either positively or negatively affect the nervous system.
机译:在几种神经肌肉疾病中受到严重影响的关键系统是肌肉和神经之间的有效连接丧失,从而导致两个组织之间的病理性非通讯。肌与神经之间相互作用受损的最好例子之一是肌萎缩性侧索硬化症,这是一种以神经运动变性和肌肉萎缩为特征的神经退行性疾病。越来越多的证据表明,邻近非神经元细胞的改变会增强对运动神经元的损害,并表明骨骼肌改变可能是影响运动神经元活动和生存的信号来源。在这里我们研究了SOD1〜(G93A)突变基因的肌肉选择性表达是否在MLC / SOD1〜(G93A)小鼠的脊髓水平上调节mRNA和miRNA的表达。使用Taqman阵列,Affymetrix小鼠基因2.0 ST方法和MiRwalk 2.0数据库(提供有关miRNA及其预测靶基因的信息),我们发现SOD1〜(G93A)的肌肉特异性表达调节了遗传和表观遗传电路的相关分子。转基因小鼠脊髓中髓鞘稳态的变化。我们的研究提供了关于肌肉与神经之间的病理生理相互作用的见解,并支持以下假设:肌肉是可以对神经系统产生正面或负面影响的信号源。

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