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首页> 外文期刊>Human Molecular Genetics >Disease modeling of core pre-mRNA splicing factor haploinsufficiency
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Disease modeling of core pre-mRNA splicing factor haploinsufficiency

机译:核心前mRNA剪接因子噬菌体疾病建模

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摘要

The craniofacial disorder mandibulofacial dysostosis Guion-Almeida type is caused by haploinsufficiency of the U5 snRNP gene EFTUD2/SNU114. However, it is unclear how reduced expression of this core pre-mRNA splicing factor leads to craniofacial defects. Here we use a CRISPR-Cas9 nickase strategy to generate a human EFTUD2-knockdown cell line and show that reduced expression of EFTUD2 leads to diminished proliferative ability of these cells, increased sensitivity to endoplasmic reticulum (ER) stress and the mis-expression of several genes involved in the ER stress response. RNA-Seq analysis of the EFTUD2-knockdown cell line revealed transcriptome-wide changes in gene expression, with an enrichment for genes associated with processes involved in craniofacial development. Additionally, our RNA-Seq data identified widespread mis-splicing in EFTUD2-knockdown cells. Analysis of the functional and physical characteristics of mis-spliced pre-mRNAs highlighted conserved properties, including length and splice site strengths, of retained introns and skipped exons in our disease model. We also identified enriched processes associated with the affected genes, including cell death, cell and organ morphology and embryonic development. Together, these data support a model in which EFTUD2 haploinsufficiency leads to the mis-splicing of a distinct subset of pre-mRNAs with a widespread effect on gene expression, including altering the expression of ER stress response genes and genes involved in the development of the craniofacial region. The increased burden of unfolded proteins in the ER resulting from mis-splicing would exceed the capacity of the defective ER stress response, inducing apoptosis in cranial neural crest cells that would result in craniofacial abnormalities during development.
机译:颅面疾病-下颌面部骨发育不良Guion-Almeida型是由U5 snRNP基因EFTUD2/SNU114单倍体不足引起的。然而,尚不清楚这种核心前体mRNA剪接因子的表达减少如何导致颅面缺损。在这里,我们使用CRISPR-Cas9-nickase策略来产生人类EFTUD2敲除细胞系,并表明EFTUD2的表达减少导致这些细胞的增殖能力降低,对内质网(ER)应激的敏感性增加,以及参与ER应激反应的几个基因的错误表达。对EFTUD2基因敲除细胞系的RNA-Seq分析显示,基因表达在转录组范围内发生了变化,与颅面发育相关的基因丰富。此外,我们的RNA-Seq数据发现EFTUD2敲除细胞中存在广泛的错误剪接。对错剪接前mRNAs的功能和物理特征的分析强调了我们的疾病模型中保留的内含子和跳过的外显子的保守特性,包括长度和剪接位点强度。我们还发现了与受影响基因相关的丰富过程,包括细胞死亡、细胞和器官形态以及胚胎发育。总之,这些数据支持一个模型,在该模型中,EFTUD2单倍体不足导致前mRNA的一个独特子集的错误拼接,对基因表达产生广泛影响,包括改变内质网应激反应基因和参与颅面区发育的基因的表达。错误剪接导致内质网中未折叠蛋白质的负担增加,这将超过内质网应激反应缺陷的能力,导致颅神经嵴细胞凋亡,从而在发育过程中导致颅面畸形。

著录项

  • 来源
    《Human Molecular Genetics 》 |2019年第22期| 共20页
  • 作者单位

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

    Univ Manchester Fac Biol Med &

    Hlth Sch Biol Sci Div Evolut &

    Genom Sci Manchester M13 9PT;

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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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