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Somatic Mutations in TSC1 and TSC2 Cause Focal Cortical Dysplasia

机译:TSC1和TSC2中的躯体突变导致局灶性皮质发育不良

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Focal cortical dysplasia (FCD) is a major cause of the sporadic form of intractable focal epilepsies that require surgical treatment. It has recently been reported that brain somatic mutations in MTOR account for 15%-25% of FCD type II (FCDII), characterized by cortical dyslamination and dysmorphic neurons. However, the genetic etiologies of FCDII-affected individuals who lack the MTOR mutation remain unclear. Here, we performed deep hybrid capture and amplicon sequencing (read depth of 100 x-20,012 x) of five important mTOR pathway genes-PIK3CA, PIK3R2, AKT3, TSC1, and TSC2-by using paired brain and saliva samples from 40 FCDII individuals negative for MTOR mutations. We found that 5 of 40 individuals (12.5%) had brain somatic mutations in TSC1 (c.64C>T [p.Arg22Trp] and c.610C>T [p.Arg204Cys]) and TSC2 (c.4639G>A [p.Va11547I1e]), and these results were reproducible on two different sequencing platforms. All identified mutations induced hyperactivation of the mTOR pathway by disrupting the formation or function of the TSC1TSC2 complex. Furthermore, in utero CRISPR-Cas9-mediated genome editing of Tsc1 or Tsc2 induced the development of spontaneous behavioral seizures, as well as cytomegalic neurons and cortical dyslamination. These results show that brain somatic mutations in TSC1 and TSC2 cause FCD and that in utero application of the CRISPR-Cas9 system is useful for generating neurodevelopmental disease models of somatic mutations in the brain.
机译:局灶性皮质发育不良(FCD)是需要手术治疗的棘爪局部癫痫的孢子形式的主要原因。最近据报道,MTOR中的脑体细胞突变占FCD II型(FCDII)的15%-25%,其特征在于皮质易振动和烦躁神经元。然而,缺乏MTOR突变的FCDII受影响的个体的遗传学病因仍然尚不清楚。在这里,我们对五个重要的MTOR途径基因-PIK3CA,PIK3R2,AKT3,TSC1和TSC2进行了深度杂化捕获和扩增子测序(读取深度100×20,012 x) - 通过使用40 fcdii个体的配对脑和唾液样品为负对于mtor突变。我们发现,在TSC1(C.64C> T [P.ARG22TRP]和C.610C> T [P.ARG204CYS])和TSC2(C.4639G> A [P.3 .va11547i1e]),这些结果在两个不同的测序平台上可重现。所有鉴定的突变通过破坏TSC1TSC2复合物的形成或功能来诱导MTOR途径的多动激活。此外,在子宫CRISPR-CAS9介导的TSC1或TSC2的基因组编辑诱导发育自发行为癫痫发作,以及细胞神经元和皮质甜母。这些结果表明,TSC1和TSC2中的脑体突变导致FCD,并且在CISPR-CAS9系统的UTERO应用中,用于产生大脑中体细胞突变的神经发育疾病模型。

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    Korea Adv Inst Sci &

    Technol Grad Sch Med Sci &

    Engn Brain Korea Plus Project 21 Daejeon 34141;

    Hanyang Univ Grad Sch Biomed Sci &

    Engn Seoul 04763 South Korea;

    Yonsei Univ Dept Pathol Coll Med Seoul 03722 South Korea;

    Hanyang Univ Grad Sch Biomed Sci &

    Engn Seoul 04763 South Korea;

    Yonsei Univ Dept Integrated OMICS Biomed Sci Seoul 03722 South Korea;

    Korea Adv Inst Sci &

    Technol Grad Sch Med Sci &

    Engn Brain Korea Plus Project 21 Daejeon 34141;

    Yonsei Univ Severance Biomed Sci Inst Coll Med Seoul 03722 South Korea;

    Korea Adv Inst Sci &

    Technol Grad Sch Med Sci &

    Engn Brain Korea Plus Project 21 Daejeon 34141;

    Korea Inst Sci &

    Technol Informat Biomed HPC Technol Res Ctr Daejeon 34141 South Korea;

    Korea Inst Toxicol Dept Predict Toxicol Daejeon 34114 South Korea;

    Yonsei Univ Coll Med Div Pediat Neurol Epilepsy Res Inst Dept Pediat Pediat Epilepsy Clin;

    Hanyang Univ Grad Sch Biomed Sci &

    Engn Seoul 04763 South Korea;

    Yonsei Univ Coll Med Div Pediat Neurol Epilepsy Res Inst Dept Pediat Pediat Epilepsy Clin;

    Yonsei Univ Severance Biomed Sci Inst Coll Med Seoul 03722 South Korea;

    Yonsei Univ Coll Med Pediat Neurosurg Severance Childrens Hosp Dept Neurosurg Seoul 03722;

    Yonsei Univ Dept Integrated OMICS Biomed Sci Seoul 03722 South Korea;

    Yonsei Univ Coll Med Div Pediat Neurol Epilepsy Res Inst Dept Pediat Pediat Epilepsy Clin;

    Yonsei Univ Coll Med Dept Pharmacol Brain Korea Plus Project Med Sci 21 Grad Program Seoul;

    Korea Adv Inst Sci &

    Technol Grad Sch Med Sci &

    Engn Brain Korea Plus Project 21 Daejeon 34141;

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  • 中图分类 医学遗传学;
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