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RAD51 杂合性不足导致人类先天性镜像运动。

RAD51 haploinsufficiency causes congenital mirror movements in humans.

机构信息

INSERM, U- CRICM, Hôpital Pitié-Salpêtrière, Paris, France.

出版信息

Am J Hum Genet. 2012 Feb 10;90(2):301-7. doi: 10.1016/j.ajhg.2011.12.002. Epub 2012 Feb 2.

Abstract

Congenital mirror movements (CMM) are characterized by involuntary movements of one side of the body that mirror intentional movements on the opposite side. CMM reflect dysfunctions and structural abnormalities of the motor network and are mainly inherited in an autosomal-dominant fashion. Recently, heterozygous mutations in DCC, the gene encoding the receptor for netrin 1 and involved in the guidance of developing axons toward the midline, have been identified but CMM are genetically heterogeneous. By combining genome-wide linkage analysis and exome sequencing, we identified heterozygous mutations introducing premature termination codons in RAD51 in two families with CMM. RAD51 mRNA was significantly downregulated in individuals with CMM resulting from the degradation of the mutated mRNA by nonsense-mediated decay. RAD51 was specifically present in the developing mouse cortex and, more particularly, in a subpopulation of corticospinal axons at the pyramidal decussation. The identification of mutations in RAD51, known for its key role in the repair of DNA double-strand breaks through homologous recombination, in individuals with CMM reveals a totally unexpected role of RAD51 in neurodevelopment. These findings open a new field of investigation for researchers attempting to unravel the molecular pathways underlying bimanual motor control in humans.

摘要

先天性镜像运动(CMM)的特征是身体一侧的无意识运动,与对侧的有意运动镜像。CMM 反映了运动网络的功能障碍和结构异常,主要以常染色体显性遗传方式遗传。最近,已发现编码轴突导向中线的 netrin 1 受体的 DCC 基因的杂合突变,但 CMM 具有遗传异质性。通过结合全基因组连锁分析和外显子组测序,我们在两个 CMM 家族中发现了 RAD51 引入过早终止密码子的杂合突变。RAD51 mRNA 在由无意义介导的衰变导致突变 mRNA 降解的 CMM 个体中显著下调。RAD51 特异性存在于发育中的小鼠皮层中,特别是在锥体交叉处的皮质脊髓轴突的亚群中。RAD51 在 CMM 个体中的突变的鉴定,RAD51 因其在同源重组修复 DNA 双链断裂方面的关键作用而闻名,揭示了 RAD51 在神经发育中的全新作用。这些发现为试图揭示人类双手运动控制的分子途径的研究人员开辟了一个新的研究领域。

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