首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Analysis of congenital hypomyelinating Egr2Lo/Lo nerves identifies Sox2 as an inhibitor of Schwann cell differentiation and myelination
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Analysis of congenital hypomyelinating Egr2Lo/Lo nerves identifies Sox2 as an inhibitor of Schwann cell differentiation and myelination

机译:对先天性低髓鞘性Egr2Lo / Lo神经的分析确定Sox2是雪旺细胞分化和髓鞘形成的抑制剂

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摘要

Egr2 is a transcription factor required for peripheral nerve myelination in rodents, and mutations in Egr2 are associated with congenital hypomyelinating neuropathy (CHN) in humans. To further study its role in myelination, we generated mice harboring a hypomorphic Egr2 allele (Egr2Lo) that survive for up to 3 weeks postnatally, a period of active myelination in rodents. These Egr2Lo/Lo mice provided the opportunity to study the molecular effects of Egr2 deficiency on Schwann cell biology, an analysis that was not possible previously, because of the perinatal lethality of Egr2-null mice. Egr2Lo/Lo mice phenocopy CHN, as evidenced by the severe hypomyelination and increased numbers of proliferating Schwann cells of the peripheral nerves. Comparison of sciatic nerve gene expression profiles during development and after crush injury with those of Egr2Lo/Lo Schwann cells revealed that they are developmentally arrested, with down-regulation of myelination-related genes and up-regulation of genes associated with immature and promyelinating Schwann cells. One of the abnormally elevated genes in Egr2Lo/Lo Schwann cells, Sox2, encodes a transcription factor that is crucial for maintenance of neural stem cell pluripotency. Wild-type Schwann cells infected with Sox2 adenovirus or lentivirus inhibited expression of myelination-associated genes (e.g., myelin protein zero; Mpz), and failed to myelinate axons in vitro, but had an enhanced proliferative response to β-neuregulin. The characterization of a mouse model of CHN has provided insight into Schwann cell differentiation and allowed the identification of Sox2 as a negative regulator of myelination.
机译:Egr2是啮齿动物周围神经髓鞘形成所必需的转录因子,Egr2的突变与人类的先天性髓鞘减少性神经病(CHN)有关。为了进一步研究其在髓鞘形成中的作用,我们产生了具有亚型Egr2等位基因(Egr2 Lo )的小鼠,该小鼠在出生后最多可存活3周,这是啮齿动物活跃的髓鞘形成时期。这些Egr2 Lo / Lo 小鼠提供了研究Egr2缺乏对施旺细胞生物学的分子效应的机会,由于Egr2缺失小鼠的围产期致死性,以前无法进行这种分析。 Egr2 Lo / Lo 小鼠的表型为CHN,表现为严重的髓鞘变性和周围神经增殖的雪旺氏细胞数量增加。比较Egr2 Lo / Lo 雪旺细胞在发育过程中和挤压伤后坐骨神经基因表达谱,发现它们在发育中被阻滞,髓鞘相关基因的表达下调,而髓鞘相关基因的表达上调。与不成熟和早髓性雪旺细胞有关的基因。 Egr2 Lo / Lo 雪旺氏细胞中异常升高的基因之一,Sox2,编码的转录因子对于维持神经干细胞的多能性至关重要。用Sox2腺病毒或慢病毒感染的野生型雪旺细胞可抑制与髓鞘形成相关的基因(例如,髓磷脂蛋白0; Mpz)的表达,并且在体外无法使轴突产生髓鞘,但对β-神经调节蛋白的增殖反应增强。 CHN小鼠模型的表征提供了对雪旺氏细胞分化的见识,并允许鉴定Sox2作为髓鞘形成的负调节剂。

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