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Somatic double-hit in MTOR and RPS6 in hemimegalencephaly with intractable epilepsy

机译:躯体双击在MTOR和RPS6中,患有顽固的癫痫症

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摘要

Single germline or somatic activating mutations of mammalian target of rapamycin (mTOR) pathway genes are emerging as a major cause of type II focal cortical dysplasia (FCD), hemimegalencephaly (HME) and tuberous sclerosis complex (TSC). A double-hit mechanism, based on a primary germline mutation in one allele and a secondary somatic hit affecting the other allele of the same gene in a small number of cells, has been documented in some patients with TSC or FCD. In a patient with HME, severe intellectual disability, intractable seizures and hypochromic skin patches, we identified the ribosomal protein S6 (RPS6) p.R232H variant, present as somatic mosaicism at similar to 15.1% in dysplastic brain tissue and similar to 11% in blood, and the MTOR p.S2215F variant, detected as similar to 8.8% mosaicism in brain tissue, but not in blood. Overexpressing the two variants independently in animal models, we demonstrated that MTOR p.S2215F caused neuronal migration delay and cytomegaly, while RPS6 p.R232H prompted increased cell proliferation. Double mutants exhibited a more severe phenotype, with increased proliferation and migration defects at embryonic stage and, at postnatal stage, cytomegalic cells exhibiting eccentric nuclei and binucleation, which are typical features of balloon cells. These findings suggest a synergistic effect of the two variants. This study indicates that, in addition to single activating mutations and double-hit inactivating mutations in mTOR pathway genes, severe forms of cortical dysplasia can also result from activating mutations affecting different genes in this pathway. RPS6 is a potential novel disease-related gene.
机译:雷帕霉素(mTOR)途径哺乳动物靶基因的单一种系或体细胞激活突变正在成为II型局灶性皮质发育不良(FCD)、半巨脑病(HME)和结节性硬化症(TSC)的主要原因。在一些TSC或FCD患者中,已记录到双重打击机制,其基础是一个等位基因的初级种系突变和一个次要的体细胞打击,影响同一基因在少量细胞中的其他等位基因。在一名患有HME、严重智力残疾、难治性癫痫和低色素性皮肤斑的患者中,我们鉴定出核糖体蛋白S6(RPS6)p.R232H变体,在发育不良的脑组织中以类似于15.1%的体细胞嵌合体形式存在,在血液中以类似于11%的体细胞嵌合体形式存在,在脑组织中检测到类似于8.8%的MTOR p.S2215F变体,但在血液中未检测到。在动物模型中独立地过度表达这两种变体,我们证明了MTOR p.S2215F导致神经元迁移延迟和细胞肥大,而RPS6 p.R232H促进细胞增殖。双突变体表现出更严重的表型,在胚胎阶段增殖和迁移缺陷增加,在出生后阶段,巨细胞细胞细胞表现出偏心核和双核化,这是气球细胞的典型特征。这些发现表明这两种变体具有协同效应。这项研究表明,除了mTOR通路基因中的单激活突变和双点击失活突变外,严重的皮质发育不良也可能是由于激活影响该通路中不同基因的突变所致。RPS6是一个潜在的新的疾病相关基因。

著录项

  • 来源
    《Human Molecular Genetics 》 |2019年第22期| 共11页
  • 作者单位

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Aix Marseille Univ INSERM INMED UMR1249 F-13009 Marseille France;

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Aix Marseille Univ INSERM INMED UMR1249 F-13009 Marseille France;

    Univ Paris 06 Hop Univ Est Parisien Serv Anat Pathol Hop Trousseau F-75012 Paris France;

    Univ Calif San Diego Howard Hughes Med Inst Dept Neurosci Rady Childrens Inst Genom Med La;

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Univ Calif San Diego Howard Hughes Med Inst Dept Neurosci Rady Childrens Inst Genom Med La;

    Aix Marseille Univ INSERM INMED UMR1249 F-13009 Marseille France;

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Univ Calif San Diego Howard Hughes Med Inst Dept Neurosci Rady Childrens Inst Genom Med La;

    Univ Florence Childrens Hosp A Meyer Pathol Unit I-50139 Florence Italy;

    Aix Marseille Univ INSERM INMED UMR1249 F-13009 Marseille France;

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Univ Calif San Diego Howard Hughes Med Inst Dept Neurosci Rady Childrens Inst Genom Med La;

    Univ Florence Childrens Hosp A Meyer Paediat Neurol Neurogenet &

    Neurobiol Unit &

    Labs Viale;

    Aix Marseille Univ INSERM INMED UMR1249 F-13009 Marseille France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学 ;
  • 关键词

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