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脆性 X 综合征小鼠模型中的髓鞘延迟。

Delayed myelination in a mouse model of fragile X syndrome.

出版信息

Hum Mol Genet. 2013 Oct 1;22(19):3920-30. doi: 10.1093/hmg/ddt246. Epub 2013 Jun 4.

Abstract

Fragile X Syndrome is the most common inherited cause of autism. Fragile X mental retardation protein (FMRP), which is absent in fragile X, is an mRNA binding protein that regulates the translation of hundreds of different mRNA transcripts. In the adult brain, FMRP is expressed primarily in the neurons; however, it is also expressed in developing glial cells, where its function is not well understood. Here, we show that fragile X (Fmr1) knockout mice display abnormalities in the myelination of cerebellar axons as early as the first postnatal week, corresponding roughly to the equivalent time in human brain development when symptoms of the syndrome first become apparent (1-3 years of age). At postnatal day (PND) 7, diffusion tensor magnetic resonance imaging showed reduced volume of the Fmr1 cerebellum compared with wild-type mice, concomitant with an 80-85% reduction in the expression of myelin basic protein, fewer myelinated axons and reduced thickness of myelin sheaths, as measured by electron microscopy. Both the expression of the proteoglycan NG2 and the number of PDGFRα+/NG2+ oligodendrocyte precursor cells were reduced in the Fmr1 cerebellum at PND 7. Although myelin proteins were still depressed at PND 15, they regained wild-type levels by PND 30. These findings suggest that impaired maturation or function of oligodendrocyte precursor cells induces delayed myelination in the Fmr1 mouse brain. Our results bolster an emerging recognition that white matter abnormalities in early postnatal brain development represent an underlying neurological deficit in Fragile X syndrome.

摘要

脆性 X 综合征是最常见的遗传性自闭症病因。脆性 X 智力低下蛋白(FMRP)在脆性 X 中缺失,它是一种 mRNA 结合蛋白,可调节数百种不同 mRNA 转录本的翻译。在成年大脑中,FMRP 主要在神经元中表达;然而,它也在发育中的神经胶质细胞中表达,其功能尚未被很好地理解。在这里,我们发现脆性 X(Fmr1)敲除小鼠在出生后第一周就表现出小脑轴突髓鞘形成异常,这大致相当于综合征症状首次出现的人类大脑发育时间(1-3 岁)。在出生后第 7 天(PND),弥散张量磁共振成像显示 Fmr1 小脑体积较野生型小鼠减小,同时少突胶质细胞髓鞘碱性蛋白表达减少 80-85%,电镜下测量的有髓轴突数量减少,髓鞘厚度减少。Fmr1 小脑在 PND 7 时,蛋白聚糖 NG2 的表达和 PDGFRα+/NG2+少突胶质前体细胞的数量均减少。虽然髓鞘蛋白在 PND 15 时仍被抑制,但在 PND 30 时恢复到野生型水平。这些发现表明,少突胶质前体细胞的成熟或功能受损导致 Fmr1 小鼠大脑髓鞘形成延迟。我们的结果支持了一种新兴的认识,即在出生后早期大脑发育中的白质异常代表脆性 X 综合征的潜在神经缺陷。

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