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Post-transcriptional regulation of FUS and EWS protein expression by miR-141 during neural differentiation

机译:MIR-141在神经分化期间MiR-141的转录后调节

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摘要

Brain development involves proliferation, migration and specification of neural progenitor cells, culminating in neuronal circuit formation. Mounting evidence indicates that improper regulation of RNA binding proteins (RBPs), including members of the FET (FUS, EWS, TAF15) family, results in defective cortical development and/or neurodegenerative disorders. However, in spite of their physiological relevance, the precise pattern of FET protein expression in developing neurons is largely unknown. Herein, we found that FUS, EWS and TAF15 expression is differentially regulated during brain development, both in time and in space. In particular, our study identifies a fine-tuned regulation of FUS and EWS during neuronal differentiation, whereas TAF15 appears to be more constitutively expressed. Mechanistically FUS and EWS protein expression is regulated at the post-transcriptional level during neuron differentiation and brain development. Moreover, we identified miR-141 as a key regulator of these FET proteins that modulate their expression levels in differentiating neuronal cells. Thus, our studies uncover a novel link between post-transcriptional regulation of FET proteins expression and neurogenesis.
机译:脑发育涉及神经祖细胞的增殖,迁移和规范,最终在神经元电路形成中。安装证据表明RNA结合蛋白(RBP)的不当调节,包括FET(FUS,EWS,TAF15)家族的成员,导致皮质发育和/或神经变性障碍的缺陷。然而,尽管他们的生理相关性,但发育中神经元的FET蛋白表达的精确模式在很大程度上是未知的。在此,我们发现在大脑发育期间,在脑部发育期间,差异调节FU,EWS和TAF15表达。特别是,我们的研究识别神经元分化期间Fus和EWS的微调调节,而TAF15似乎更加富有于表达。机械主义FUS和EWS蛋白表达在神经元分化和脑发育过程中转录后水平调节。此外,我们将MIR-141鉴定为这些FET蛋白的关键调节器,其调节分化神经元细胞中的表达水平。因此,我们的研究发现了FET蛋白表达和神经发生的转录后调节之间的新联合。

著录项

  • 来源
    《Human Molecular Genetics 》 |2017年第14期| 共15页
  • 作者单位

    Univ Rome Foro Italico Dept Movement Human &

    Hlth Sci I-00135 Rome Italy;

    Univ Rome Foro Italico Dept Movement Human &

    Hlth Sci I-00135 Rome Italy;

    Fdn Santa Lucia Labs Cellular &

    Mol Neurobiol &

    Neuroembryol I-00143 Rome Italy;

    Univ Rome Foro Italico Dept Movement Human &

    Hlth Sci I-00135 Rome Italy;

    Univ Rome Foro Italico Dept Movement Human &

    Hlth Sci I-00135 Rome Italy;

    Fdn Santa Lucia Labs Cellular &

    Mol Neurobiol &

    Neuroembryol I-00143 Rome Italy;

    Univ Rome Foro Italico Dept Movement Human &

    Hlth Sci I-00135 Rome 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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