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首页> 外文期刊>Neurology: Genetics >Novel EGR2 variant that associates with Charcot-Marie-Tooth disease when combined with lipopolysaccharide-induced TNF-α factor T49M polymorphism
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Novel EGR2 variant that associates with Charcot-Marie-Tooth disease when combined with lipopolysaccharide-induced TNF-α factor T49M polymorphism

机译:新的EGR2变体与Charcot-Marie-Toper疾病联系在与脂多糖诱导的TNF-α因子T49M多态性结合时相关联

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Objective To identify novel genetic mechanisms causing Charcot-Marie-Tooth (CMT) disease. Methods We performed a next-generation sequencing study of 34 genes associated with CMT in a patient with peripheral neuropathy. Results We found a non–previously described mutation in EGR2 (p.P397H). P397H mutation is located within the loop that connects zinc fingers 2 and 3, a pivotal domain for the activity of this transcription factor. Using promoter activity luciferase assays, we found that this mutation promotes decreased transcriptional activity of EGR2. In this patient, we also found a previously described nonpathogenic polymorphism in lipopolysaccharide-induced TNF-α factor (LITAF) (p.T49M). We show that the p.T49M mutation decreases the steady-state levels of the LITAF protein in Schwann cells. Loss of function of LITAF has been shown to produce deregulation in the NRG1-erbB signaling, a pivotal pathway for EGR2 expression by Schwann cells. Surprisingly, our segregation study demonstrates that p.P397H mutation in EGR2 is not sufficient to produce CMT disease. Most notably, only those patients expressing simultaneously the LITAF T49M polymorphism develop peripheral neuropathy. Conclusions Our data support that the LITAF loss-of-function interferes with the expression of the transcriptional-deficient EGR2 P397H mutant hampering Schwann cell differentiation and suggest that in vivo both genes act in tandem to allow the proper development of myelin.
机译:目的鉴定引起Charcot-Marie-tooth(CMT)疾病的新型遗传机制。方法我们在患有外周神经病变的患者中对34个基因进行了下一代测序研究。结果我们发现EGR2中的非先前描述的突变(P.P397H)。 P397H突变位于连接锌指状物2和3的环内,该转录因子的活性枢转结构域。使用启动子活性荧光素酶测定,我们发现该突变促进EGR2的转录活性降低。在该患者中,我们还发现了先前描述的脂多糖诱导的TNF-α因子(LITAF)(P.T49M)中的非对象多态性。我们表明,P.T49M突变降低了施旺细胞中LITAF蛋白的稳态水平。已经显示LITAF的功能丧失在NRG1-ERBB信号传导中产生放松管制,SCHWANN细胞的EGR2表达的枢轴途径。令人惊讶的是,我们的分离研究表明EGR2中的P.P397H突变不足以产生CMT疾病。最值得注意的是,只有那些同时表达的患者LITAF T49M多态性发生外周神经病变。结论我们的数据支持,LITAF失去功能干扰了转录缺陷型EGR2 P397H突变体的表达阻碍了施万细胞分化,并表明,在体内,两种基因都在串联作用,以允许髓鞘的适当发展。

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