首页> 美国卫生研究院文献>The Journal of Biological Chemistry >TDP-43 and FUS RNA-binding Proteins Bind Distinct Sets of Cytoplasmic Messenger RNAs and Differently Regulate Their Post-transcriptional Fate in Motoneuron-like Cells
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TDP-43 and FUS RNA-binding Proteins Bind Distinct Sets of Cytoplasmic Messenger RNAs and Differently Regulate Their Post-transcriptional Fate in Motoneuron-like Cells

机译:TDP-43和FUS RNA结合蛋白绑定不同的细胞质信使RNA集并不同地调节其在motonuron样细胞中的转录后命运。

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摘要

The RNA-binding proteins TDP-43 and FUS form abnormal cytoplasmic aggregates in affected tissues of patients with amyotrophic lateral sclerosis and frontotemporal lobar dementia. TDP-43 and FUS localize mainly in the nucleus where they regulate pre-mRNA splicing, but they are also involved in mRNA transport, stability, and translation. To better investigate their cytoplasmic activities, we applied an RNA immunoprecipitation and chip analysis to define the mRNAs associated to TDP-43 and FUS in the cytoplasmic ribonucleoprotein complexes from motoneuronal NSC-34 cells. We found that they bind different sets of mRNAs although converging on common cellular pathways. Bioinformatics analyses identified the (UG)n consensus motif in 80% of 3′-UTR sequences of TDP-43 targets, whereas for FUS the binding motif was less evident. By in vitro assays we validated binding to selected target 3′-UTRs, including Vegfa and Grn for TDP-43, and Vps54, Nvl, and Taf15 for FUS. We showed that TDP-43 has a destabilizing activity on Vegfa and Grn mRNAs and may ultimately affect progranulin protein content, whereas FUS does not affect mRNA stability/translation of its targets. We also demonstrated that three different point mutations in TDP-43 did not change the binding affinity for Vegfa and Grn mRNAs or their protein level. Our data indicate that TDP-43 and FUS recognize distinct sets of mRNAs and differently regulate their fate in the cytoplasm of motoneuron-like cells, therefore suggesting complementary roles in neuronal RNA metabolism and neurodegeneration.
机译:RNA结合蛋白TDP-43和FUS在肌萎缩性侧索硬化和额颞叶性痴呆患者的受影响组织中形成异常的胞质聚集体。 TDP-43和FUS主要位于细胞核中,在细胞核中它们调节mRNA之前的剪接,但它们也参与mRNA的运输,稳定性和翻译。为了更好地研究它们的细胞质活性,我们应用了RNA免疫沉淀和芯片分析来定义与来自动脑神经元NSC-34细胞的细胞质核糖核蛋白复合物中TDP-43和FUS相关的mRNA。我们发现,尽管它们会汇聚在常见的细胞途径上,但它们会结合不同的mRNA组。生物信息学分析在TDP-43靶标的3'-UTR序列的80%中确定了(UG)n共有基序,而对于FUS,结合基序不那么明显。通过体外测定,我们验证了与所选靶标3'-UTR的结合,包括针对TDP-43的Vegfa和Grn,以及针对FUS的Vps54,Nvl和Taf15。我们显示,TDP-43对Vegfa和Grn mRNA具有去稳定作用,并可能最终影响颗粒蛋白原蛋白含量,而FUS不会影响其靶标的mRNA稳定性/翻译。我们还证明,TDP-43中的三个不同点突变不会改变对Vegfa和Grn mRNA的结合亲和力或它们的蛋白水平。我们的数据表明TDP-43和FUS识别不同组的mRNA,并在运动神经元样细胞的细胞质中不同地调节它们的命运,因此暗示了神经元RNA代谢和神经变性中的互补作用。

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