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hnRNP R 全长异构体的缺失通过抑制 Yb1 向染色质的募集来损害运动神经元中的 DNA 损伤反应。

Loss of full-length hnRNP R isoform impairs DNA damage response in motoneurons by inhibiting Yb1 recruitment to chromatin.

机构信息

Institute of Clinical Neurobiology, University Hospital Wuerzburg, Wuerzburg 97080, Germany.

Department of Proteomics and Signal Transduction, Max Planck Institute of Biochemistry, Martinsried82152, Germany.

出版信息

Nucleic Acids Res. 2021 Dec 2;49(21):12284-12305. doi: 10.1093/nar/gkab1120.

Abstract

Neurons critically rely on the functions of RNA-binding proteins to maintain their polarity and resistance to neurotoxic stress. HnRNP R has a diverse range of post-transcriptional regulatory functions and is important for neuronal development by regulating axon growth. Hnrnpr pre-mRNA undergoes alternative splicing giving rise to a full-length protein and a shorter isoform lacking its N-terminal acidic domain. To investigate functions selectively associated with the full-length hnRNP R isoform, we generated a Hnrnpr knockout mouse (Hnrnprtm1a/tm1a) in which expression of full-length hnRNP R was abolished while production of the truncated hnRNP R isoform was retained. Motoneurons cultured from Hnrnprtm1a/tm1a mice did not show any axonal growth defects but exhibited enhanced accumulation of double-strand breaks and an impaired DNA damage response upon exposure to genotoxic agents. Proteomic analysis of the hnRNP R interactome revealed the multifunctional protein Yb1 as a top interactor. Yb1-depleted motoneurons were defective in DNA damage repair. We show that Yb1 is recruited to chromatin upon DNA damage where it interacts with γ-H2AX, a mechanism that is dependent on full-length hnRNP R. Our findings thus suggest a novel role of hnRNP R in maintaining genomic integrity and highlight the function of its N-terminal acidic domain in this context.

摘要

神经元严重依赖 RNA 结合蛋白的功能来维持其极性和抵抗神经毒性应激。hnRNP R 具有多种转录后调控功能,通过调节轴突生长对神经元发育很重要。Hnrnpr 前体 mRNA 经历选择性剪接,产生全长蛋白和缺乏其 N 端酸性结构域的较短同工型。为了研究与全长 hnRNP R 同工型选择性相关的功能,我们生成了一个 Hnrnpr 敲除小鼠(Hnrnprtm1a/tm1a),其中全长 hnRNP R 的表达被废除,而截短的 hnRNP R 同工型的产生被保留。从小鼠培养的运动神经元没有表现出任何轴突生长缺陷,但在暴露于遗传毒性药物后,双链断裂的积累增强,DNA 损伤反应受损。hnRNP R 相互作用组的蛋白质组学分析揭示了多功能蛋白 Yb1 是顶级相互作用物。Yb1 耗尽的运动神经元在 DNA 损伤修复中存在缺陷。我们表明,Yb1 在 DNA 损伤时被募集到染色质上,与 γ-H2AX 相互作用,这种机制依赖于全长 hnRNP R。我们的研究结果表明 hnRNP R 在维持基因组完整性方面具有新的作用,并强调了其 N 端酸性结构域在这方面的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/928a/8643683/278869c22f1d/gkab1120fig1.jpg

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