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首页> 外文期刊>Molecular Neurobiology >Transcriptome and Proteome Profiling of Neural Induced Pluripotent Stem Cells from Individuals with Down Syndrome Disclose Dynamic Dysregulations of Key Pathways and Cellular Functions
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Transcriptome and Proteome Profiling of Neural Induced Pluripotent Stem Cells from Individuals with Down Syndrome Disclose Dynamic Dysregulations of Key Pathways and Cellular Functions

机译:神经诱导多能干细胞的转录组和蛋白质组分析来自唐氏综合征的个体公开了关键途径和细胞功能的动态脱节

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摘要

Down syndrome (DS) or trisomy 21 (T21) is a leading genetic cause of intellectual disability. To gain insights into dynamics of molecular perturbations during neurogenesis in DS, we established a model using induced pluripotent stem cells (iPSC) with transcriptome profiles comparable to that of normal fetal brain development. When applied on iPSCs with T21, transcriptome and proteome signatures at two stages of differentiation revealed strong temporal dynamics of dysregulated genes, proteins and pathways belonging to 11 major functional clusters. DNA replication, synaptic maturation and neuroactive clusters were disturbed at the early differentiation time point accompanied by a skewed transition from the neural progenitor cell stage and reduced cellular growth. With differentiation, growth factor and extracellular matrix, oxidative phosphorylation and glycolysis emerged as major perturbed clusters. Furthermore, we identified a marked dysregulation of a set of genes encoded by chromosome 21 including an early upregulation of the hub gene APP, supporting its role for disturbed neurogenesis, and the transcription factors OLIG1, OLIG2 and RUNX1, consistent with deficient myelination and neuronal differentiation. Taken together, our findings highlight novel sequential and differentiation-dependent dynamics of disturbed functions, pathways and elements in T21 neurogenesis, providing further insights into developmental abnormalities of the DS brain.
机译:唐氏综合征(DS)或三术21(T21)是智力残疾的主要遗传原因。为了在DS中的神经发生期间进入分子扰动的动态,我们使用诱导多能干细胞(IPSC)建立了一种模型,该模型与正常胎儿脑发育的转录组谱相当。当用T21施加IPSCS时,分化的两个阶段的转录组和蛋白质组签名显示了具有缺乏测定基因,蛋白质和属于11个主要功能簇的途径的强烈时间动态。 DNA复制,突触成熟和神经活性簇在早期分化的时间点被扰乱,伴随着从神经祖细胞阶段的偏斜过渡并降低细胞生长。随着分化,生长因子和细胞外基质,氧化磷酸化和糖酵解出现为主要扰动簇。此外,我们鉴定了由染色体21编码的一组基因的标记的失调,包括HUB基因APP的早期上调,支持其对干扰神经发生的作用,以及与缺陷的髓鞘形成和神经元分化一致的转录因子olig1,olig2和runx1。 。我们的研究结果结合在一起,突出了T21神经发生中的扰动功能,途径和元素的新型顺序和分化依赖性动态,从而进一步了解DS脑的发育异常。

著录项

  • 来源
    《Molecular Neurobiology》 |2019年第10期|共15页
  • 作者单位

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Karolinska Inst Solna Dept Neurosci SE-17165 Stockholm Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Uppsala Univ Dept Chem BMC Analyt Chem Box 599 SE-75124 Uppsala Sweden;

    Uppsala Univ Dept Chem BMC Analyt Chem Box 599 SE-75124 Uppsala Sweden;

    Uppsala Univ Dept Chem BMC Analyt Chem Box 599 SE-75124 Uppsala Sweden;

    Uppsala Univ Dept Med Sci &

    Sci Life Lab Box 1432 SE-75144 Uppsala Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

    Stockholm Univ Natl Bioinformat Infrastruct Sweden Sci Life Lab Dept Biochem &

    Biophys Box 1031;

    Karolinska Inst Solna Dept Neurosci SE-17165 Stockholm Sweden;

    Uppsala Univ Dept Immunol Genet &

    Pathol Sci Life Lab Box 815 SE-75108 Uppsala Sweden;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 人体生理学;
  • 关键词

    Down syndrome; Induced pluripotent stem cells (iPSC); Neural differentiation; RNA sequencing; Proteome profiling;

    机译:唐氏综合征;诱导多能干细胞(IPSC);神经分化;RNA测序;蛋白质组分析;

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