首页> 外文期刊>Human Molecular Genetics >Modeling Cornelia de Lange syndrome in vitro and in vivo reveals a role for cohesin complex in neuronal survival and differentiation
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Modeling Cornelia de Lange syndrome in vitro and in vivo reveals a role for cohesin complex in neuronal survival and differentiation

机译:模拟Cornelia de Lange综合征在体外和体内揭示了神经元生存和分化中的休肽复合物的作用

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摘要

Cornelia de Lange syndrome (CdLS), which is reported to affect similar to 1 in 10 000 to 30 000 newborns, is a multisystem organ developmental disorder with relatively mild to severe effects. Among others, intellectual disability represents an important feature of this condition. CdLS can result from mutations in at least five genes: nipped-B-like protein, structural maintenance of chromosomes 1A, structural maintenance of chromosomes 3, RAD21 cohesin complex component and histone deacetylase 8 (HDAC8). It is believed that mutations in these genes cause CdLS by impairing the function of the cohesin complex (to which all the aforementioned genes contribute to the structure or function), disrupting gene regulation during critical stages of early development. Since intellectual disorder might result from alterations in neural development, in this work, we studied the role of Hdac8 gene in mouse neural stem cells (NSCs) and in vertebrate (Danio rerio) brain development by knockdown and chemical inhibition experiments. Underlying features of Hdac8 deficiency is an increased cell death in the developing neural tissues, either in mouse NSCs or in zebrafish embryos.
机译:Cornelia de Lange综合征(CDL),其据报道,影响与10 000次相似的新生儿,是一种多系统器官发育障碍,具有相对轻微的严重影响。其中,智力残疾代表了这种情况的重要特征。 CDL可以由至少五个基因的突变产生:捏合B样蛋白,染色体的结构维持1A,染色体3,rad21幼晶复合组分和组蛋白脱乙酰酶8(HDAC8)的结构维持。据信,这些基因中的突变通过损害休蛋白复合物(所有上述基因对结构或功能的贡献),在早期发育的关键阶段中断基因调节中引起CDL。由于智障症可能是由于神经发展的改变,在这项工作中,我们研究了HDAC8基因在小鼠神经干细胞(NSCs)和脊椎动物(Danio Rerio)脑发育中的作用,通过敲低和化学抑制实验。 HDAC8缺乏的潜在特征是在小鼠NSC中或斑马鱼胚胎中的开发神经组织中的细胞死亡增加。

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  • 来源
    《Human Molecular Genetics》 |2019年第1期|共10页
  • 作者单位

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

    Univ Milan Dipartimento Biotecnol Med &

    Med Traslaz I-20090 Milan Italy;

    Univ Milan Dipartimento Biotecnol Med &

    Med Traslaz I-20090 Milan Italy;

    Univ Milano Bicocca Ctr Ric Tettamanti Clin Pediat Fdn MBBM Osped S Gerardo I-20900 Monza Italy;

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

    Univ Milan Dipartimento Biotecnol Med &

    Med Traslaz I-20090 Milan Italy;

    Fdn IRCCS Ist Neurol C Besta I-20131 Milan Italy;

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

    Univ Milano Bicocca Ctr Ric Tettamanti Clin Pediat Fdn MBBM Osped S Gerardo I-20900 Monza Italy;

    Univ Milano Bicocca Clin Pediat Fdn MBBM Osped S Gerardo I-20900 Monza Italy;

    Univ Milan Dipartimento Biosci I-20131 Milan Italy;

    ASST Lariana UOC Pediat I-22042 Como Italy;

    Univ Milan Dipartimento Sci Salute Via A Di Rudini 8 I-20142 Milan Italy;

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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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