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MORC2 突变导致的轴索型遗传性运动感觉神经病的分子机制特征。

Characterization of molecular mechanisms underlying the axonal Charcot-Marie-Tooth neuropathy caused by MORC2 mutations.

机构信息

Unit of Genetics and Genomics of Neuromuscular and Neurodegenerative Disorders, Centro de Investigación Príncipe Felipe (CIPF), Valencia, Spain.

Department of Neuroscience, Karolinska Institutet, Stockholm, Sweden.

出版信息

Hum Mol Genet. 2019 May 15;28(10):1629-1644. doi: 10.1093/hmg/ddz006.

DOI:10.1093/hmg/ddz006
PMID:30624633
Abstract

Mutations in MORC2 lead to an axonal form of Charcot-Marie-Tooth (CMT) neuropathy type 2Z. To date, 31 families have been described with mutations in MORC2, indicating that this gene is frequently involved in axonal CMT cases. While the genetic data clearly establish the causative role of MORC2 in CMT2Z, the impact of its mutations on neuronal biology and their phenotypic consequences in patients remains to be clarified. We show that the full-length form of MORC2 is highly expressed in both embryonic and adult human neural tissues and that Morc2 expression is dynamically regulated in both the developing and the maturing murine nervous system. To determine the effect of the most common MORC2 mutations, p.S87L and p.R252W, we used several in vitro cell culture paradigms. Both mutations induced transcriptional changes in patient-derived fibroblasts and when expressed in rodent sensory neurons. These changes were more pronounced and accompanied by abnormal axonal morphology, in neurons expressing the MORC2 p.S87L mutation, which is associated with a more severe clinical phenotype. These data provide insight into the neuronal specificity of the mutated MORC2-mediated phenotype and highlight the importance of neuronal cell models to study the pathophysiology of CMT2Z.

摘要

MORC2 基因突变导致 2Z 型遗传性运动感觉神经病(Charcot-Marie-Tooth,CMT)。迄今为止,已有 31 个家族被报道存在 MORC2 基因突变,这表明该基因常与轴索型 CMT 病例相关。虽然遗传数据明确确立了 MORC2 在 CMT2Z 中的致病作用,但其突变对神经元生物学的影响及其在患者中的表型后果仍有待阐明。我们发现全长 MORC2 形式在胚胎和成人神经组织中均有高度表达,并且 Morc2 表达在发育中和成熟的小鼠神经系统中均呈动态调节。为了确定最常见的 MORC2 突变(p.S87L 和 p.R252W)的影响,我们使用了几种体外细胞培养模型。这两种突变均诱导了患者来源的成纤维细胞中的转录变化,并且当在啮齿动物感觉神经元中表达时也是如此。在表达 MORC2 p.S87L 突变的神经元中,这些变化更为明显,并伴有异常的轴突形态,而 p.S87L 突变与更为严重的临床表型相关。这些数据提供了对突变的 MORC2 介导表型的神经元特异性的深入了解,并强调了神经元细胞模型在研究 CMT2Z 病理生理学中的重要性。

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