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首页> 外文期刊>Journal of Neuroscience Research >Possible involvement of a cell adhesion molecule, Migfilin, in brain development and pathogenesis of autism spectrum disorders
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Possible involvement of a cell adhesion molecule, Migfilin, in brain development and pathogenesis of autism spectrum disorders

机译:细胞粘附分子,migfilin,脑发育和自闭症谱系疾病发病机制的可能涉及

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摘要

Abstract Migfilin, encoded by FBLIM1 at the 1p36 locus, is a multi‐domain adaptor protein essential for various cellular processes such as cell morphology and migration. Small deletions and duplications at the 1p36 locus, monosomy of which results in neurodevelopmental disorders and multiple congenital anomalies, have also been identified in patients with autism spectrum disorder (ASD). However, the impact of FBLIM1 , the gene within 1p36, on the pathogenesis of ASD is unknown. In this study, we performed morphological analyses of migfilin to elucidate its role in brain development. Migfilin was detected specifically in the embryonic and perinatal stages of the mouse brain. Either silencing or overexpression of migfilin in embryos following in utero electroporation disrupted Neocortical neuronal migration. Additionally, neurite elongation was impaired when migfilin was silenced in cultured mouse hippocampal neurons. We then screened FBLIM1 for rare exonic deletions/duplications in 549 Japanese ASD patients and 824 controls, detecting one case of ASD and intellectual delay that harbored a 26‐kb deletion at 1p36.21 that solely included the C‐terminal exon of FBLIM1 . The FBLIM1 mRNA expression level in this case was reduced compared to levels in individuals without FBLIM1 deletion. Our findings indicate that tightly regulated expression of migfilin is essential for neuronal development and that FBLIM1 disruption may be related to the phenotypes associated with ASD and related neurodevelopmental disorders.
机译:摘要在1p36基因座的Fblim1编码的抽象migfilin是一种多域适配器蛋白,适用于各种细胞过程,例如细胞形态和迁移。在1P36基因座的小缺失和重复性,其单粒因,其导致神经发育障碍和多重先天性异常,也已在自闭症谱系疾病(ASD)的患者中鉴定出来。然而,FBlim1的影响是1P36内的基因,在ASD的发病机制上是未知的。在这项研究中,我们进行了米霉素的形态分析,以阐明其在脑发育中的作用。在小鼠脑的胚胎和围产期中特异性检测migfilin。在子宫电穿孔中胚胎中胚胎中的瞳孔或过表达造成胚胎电穿孔中断的NeoCoric神经元迁移。另外,当米格芬林在培养的小鼠海马神经元中沉默时,神经突伸长率受到损害。然后,我们在549名日本ASD患者和824个对照中筛选FBlim1以获得罕见的外源缺失/重复性,检测1P36.21中的一个ASD和智力延迟的一个案例,其单独包括FBlim1的C末端外显子。与没有FBLIM1缺失的个体水平相比,这种情况下的FBLIM1 mRNA表达水平降低。我们的研究结果表明,严格调节的Migfilin表达对于神经元发育至关重要,并且FBlim1破坏可能与与ASD相关的表型和相关神经发育障碍有关。

著录项

  • 来源
    《Journal of Neuroscience Research》 |2018年第5期|共14页
  • 作者单位

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of Molecular Neurobiology Institute for Developmental ResearchAichi Human Service;

    Department of Molecular Neurobiology Institute for Developmental ResearchAichi Human Service;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of Molecular Neurobiology Institute for Developmental ResearchAichi Human Service;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of Child and Adolescent Psychiatry Kohnodai HospitalNational Center for Global Health;

    Hiroshima City Center for Children's Health and DevelopmentHiroshima Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of PsychiatryNagoya University Graduate School of MedicineNagoya Japan;

    Department of Molecular Neurobiology Institute for Developmental ResearchAichi Human Service;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 神经病学;
  • 关键词

    Autism spectrum disorder; corticogenesis; FBLIM1; Migfilin; neuronal development; perinatal period;

    机译:自闭症谱系障碍;皮质发生;FBLIM1;米格芬;神经元发展;围产期;

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