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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Varying survival of motoneurons and activation of distinct molecular mechanism in response to altered peripheral myelin protein 22 gene dosage.
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Varying survival of motoneurons and activation of distinct molecular mechanism in response to altered peripheral myelin protein 22 gene dosage.

机译:改变运动神经元的存活和激活独特的分子机制,以响应改变的外周髓磷脂蛋白22基因剂量。

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Alteration in the expression level of peripheral myelin protein 22 (PMP22) is the most frequent cause for demyelinating neuropathies of Charcot-Marie-Tooth type. Here, we demonstrate a loss of motoneurons (MNs) in the spinal cords from transgenic mice over-expressing Pmp22 (Pmp22(tg)) while mice lacking Pmp22 [Pmp22(ko); knockout (ko)] exhibited normal MN numbers at the symptomatic age of 60 days. In order to describe the molecular changes in affected MNs, these cells were isolated from lumbar spinal cords by laser-capture microdissection. Remarkably, the MNs of the Pmp22(ko) and Pmp22(tg) mice showed different expression profiles because of the altered Pmp22 expression. The changes in the expression profile of MNs from Pmp22(ko) mice resemble those described in MNs from mice after nerve injury and included genes that had been described in neuronal growth and regeneration like Gap43 and Sprr11a. The changes detected in the expression pattern of MNs from Pmp22(tg) mice exhibited fewer similarities to other expression patterns. The specific expression pattern in the MNs of the Pmp22(ko) mice might contribute to the better survival of the MNs. Our study also revealed induction of genes like brain-expressed X-linked 1 (Bex1) and desmoplakin (Dsp) that had recently been found up-regulated in MNs of human amyotrophic lateral sclerosis patients.
机译:外周髓磷脂蛋白22(PMP22)表达水平的改变是Charcot-Marie-Tooth型脱髓鞘神经病的最常见原因。在这里,我们证明了过度表达Pmp22(Pmp22(tg))的转基因小鼠的脊髓中运动神经元(MNs)的缺失,而缺乏Pmp22 [Pmp22(ko);基因敲除(ko)在有症状的60天时显示正常的MN值。为了描述受影响的MNs中的分子变化,通过激光捕获显微解剖从腰脊髓中分离出这些细胞。值得注意的是,由于Pmp22表达的改变,Pmp22(ko)和Pmp22(tg)小鼠的MNs显示出不同的表达谱。 Pmp22(ko)小鼠的MNs表达谱的变化类似于神经损伤后小鼠的MNs中描述的变化,包括神经元生长和再生中描述的基因,如Gap43和Sprr11a。从Pmp22(tg)小鼠的MNs表达模式中检测到的变化与其他表达模式的相似性较弱。 Pmp22(ko)小鼠的MN中的特定表达模式可能有助于MN的更好生存。我们的研究还揭示了诱导基因表达的基因,如脑表达的X连锁1(Bex1)和桥粒斑蛋白(Dsp),最近在人类肌萎缩性侧索硬化症患者的MN中被上调。

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