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Increased nuclear but not cytoplasmic activities of CELF1 protein leads to muscle wasting

机译:增加核,但不是Celf1蛋白的细胞质活性导致肌肉浪费

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摘要

mRNA processing is highly regulated during development through changes in RNA-binding protein (RBP) activities. CUG-BP, Elav-like family member 1 (CELF1, also called CUGBP1) is an RBP, the expression of which decreases in skeletal muscle soon after birth. CELF1 regulates multiple nuclear and cytoplasmic RNA processing events. In the nucleus, CELF1 regulates networks of postnatal alternative splicing (AS) transitions, while in the cytoplasm, CELF1 regulates mRNA stability and translation. Stabilization and misregulation of CELF1 has been implicated in human diseases including myotonic dystrophy type 1, Alzheimer's disease and multiple cancers. To understand the contribution of nuclear and cytoplasmic CELF1 activity to normal and pathogenic skeletal muscle biology, we generated transgenic mice for doxycycline-inducible and skeletal muscle-specific expression of active CELF1 mutants engineered to be localized predominantly to either the nucleus or the cytoplasm. Adult mice expressing nuclear, but not cytoplasmic, CELF1 are characterized by strong histopathological defects, muscle loss within 10 days and changes in AS. In contrast, mice expressing cytoplasmic CELF1 display changes in protein levels of targets known to be regulated at the level of translation by CELF1, with minimal changes in AS. These changes are in the absence of overt histopathological changes or muscle loss. RNA-sequencing revealed extensive gene expression and AS changes in mice overexpressing nuclear and naturally localized CELF1 protein, with affected genes involved in cytoskeleton dynamics, membrane dynamics, RNA processing and zinc ion binding. These results support a stronger role for nuclear CELF1 functions as compared to cytoplasmic CELF1 functions in skeletal muscle wasting.
机译:mRNA加工在发育过程中通过RNA结合蛋白(RBP)活性的变化受到高度调控。CUG-BP,Elav样家族成员1(CELF1,也称CUGBP1)是一种RBP,出生后不久其在骨骼肌中的表达降低。CELF1调节多个核和细胞质RNA处理事件。在细胞核中,CELF1调节出生后选择性剪接(AS)转换网络,而在细胞质中,CELF1调节mRNA的稳定性和翻译。CELF1的稳定和失调与人类疾病有关,包括1型强直性肌营养不良症、阿尔茨海默病和多种癌症。为了了解细胞核和细胞质CELF1活性对正常和致病性骨骼肌生物学的贡献,我们制作了多西环素诱导和骨骼肌特异性表达活性CELF1突变体的转基因小鼠,这些突变体主要定位于细胞核或细胞质。成年小鼠表达有核但无细胞质的CELF1,其特征是严重的组织病理学缺陷、10天内肌肉萎缩和AS的改变。相比之下,表达细胞质CELF1的小鼠显示出已知在CELF1翻译水平调节的靶蛋白水平的变化,而AS的变化最小。这些变化是在没有明显的组织病理学变化或肌肉损失的情况下发生的。RNA测序显示,在过度表达细胞核和自然定位的CELF1蛋白的小鼠中,广泛的基因表达和AS变化,受影响的基因涉及细胞骨架动力学、膜动力学、RNA处理和锌离子结合。这些结果支持细胞核CELF1功能比细胞质CELF1功能在骨骼肌萎缩中发挥更大的作用。

著录项

  • 来源
    《Human Molecular Genetics》 |2020年第10期|共16页
  • 作者单位

    Baylor Coll Med Dept Pathol &

    Immunol One Baylor Plaza Houston TX 77030 USA;

    Oregon Hlth &

    Sci Univ Computat Biol Program Portland OR 97239 USA;

    Oregon Hlth &

    Sci Univ Computat Biol Program Portland OR 97239 USA;

    Baylor Coll Med Dept Pathol &

    Immunol One Baylor Plaza Houston TX 77030 USA;

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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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