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首页> 外文期刊>Experimental Neurology >Conditional inactivation of the NBS1 gene in the mouse central nervous system leads to neurodegeneration and disorganization of the visual system.
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Conditional inactivation of the NBS1 gene in the mouse central nervous system leads to neurodegeneration and disorganization of the visual system.

机译:小鼠中枢神经系统中NBS1基因的条件失活导致神经变性和视觉系统紊乱。

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摘要

Nijmegen breakage syndrome (NBS) is a genomic instability disease caused by hypomorphic mutations in the NBS1 gene encoding the Nbs1 (nibrin) protein. Nbs1 is a component of the Mre11/Rad50/Nbs1 (MRN) complex that acts as a sensor of double strand breaks (DSBs) in the DNA and is critical for proper activation of the broad cellular response to DSBs. Conditional disruption of the murine ortholog of the human NBS1, Nbs1, in the CNS of mice was previously reported to cause microcephaly, severe cerebellar atrophy and ataxia. Here we report that conditional targeted disruption of the murine NBS1 gene in the CNS results in mal-development, degeneration, disorganization and dysfunction of the murine visual system, especially in the optic nerve. Nbs1 deletion resulted in reduced diameters of Nbs1-CNS-Delta eye and optic nerve. MRI analysis revealed defective white matter development and organization. Nbs1 inactivation altered the morphology and organization of the glial cells. Interestingly, at the age of two-month-old the levels of the axonal guidance molecule semaphorin-3A and its receptor neuropilin-1 were up-regulated in the retina of the mutant mice, a typical injury response. Electroretinogram analysis revealed marked reduction in a- and b-waves, indicative of decreased retinal function. Our study points to a novel role for Nbs1 in the development, organization and function of the visual system.
机译:奈梅亨破坏综合症(NBS)是一种基因组不稳定性疾病,由编码Nbs1(脑啡肽)蛋白的NBS1基因的亚型突变引起。 Nbs1是Mre11 / Rad50 / Nbs1(MRN)复合体的一个组成部分,可充当DNA中双链断裂(DSB)的传感器,对于适当激活广泛的细胞对DSB的反应至关重要。以前有报道说,有条件地破坏小鼠中枢神经系统中人NBS1,Nbs1的鼠直系同源基因会引起小头畸形,严重的小脑萎缩和共济失调。在这里,我们报道中枢神经系统中的鼠NBS1基因的有条件的有针对性的破坏导致鼠视觉系统,特别是在视神经中的发育不良,退化,组织紊乱和功能障碍。 Nbs1缺失导致Nbs1-CNS-Delta眼睛和视神经直径减小。 MRI分析显示有缺陷的白质发育和组织。 Nbs1失活改变了胶质细胞的形态和组织。有趣的是,在两个月大的时候,突变小鼠的视网膜中轴突引导分子semaphorin-3A及其受体Neuropilin-1的水平上调。视网膜电图分析显示a波和b波明显减少,表明视网膜功能降低。我们的研究指出Nbs1在视觉系统的发展,组织和功能中的新作用。

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