Alternative splicing coupled to nonsense-mediated decay coordinates downregulation of non-neuronal genes in developing mouse neurons

IF 10.1 1区 生物学 Q1 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Genome Biology Pub Date : 2024-06-20 DOI:10.1186/s13059-024-03305-8
Anna Zhuravskaya, Karen Yap, Fursham Hamid, Eugene V. Makeyev
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Abstract

The functional coupling between alternative pre-mRNA splicing (AS) and the mRNA quality control mechanism called nonsense-mediated decay (NMD) can modulate transcript abundance. Previous studies have identified several examples of such a regulation in developing neurons. However, the systems-level effects of AS-NMD in this context are poorly understood. We developed an R package, factR2, which offers a comprehensive suite of AS-NMD analysis functions. Using this tool, we conducted a longitudinal analysis of gene expression in pluripotent stem cells undergoing induced neuronal differentiation. Our analysis uncovers hundreds of AS-NMD events with significant potential to regulate gene expression. Notably, this regulation is significantly overrepresented in specific functional groups of developmentally downregulated genes. Particularly strong association with gene downregulation is detected for alternative cassette exons stimulating NMD upon their inclusion into mature mRNA. By combining bioinformatic analyses with CRISPR/Cas9 genome editing and other experimental approaches we show that NMD-stimulating cassette exons regulated by the RNA-binding protein PTBP1 dampen the expression of their genes in developing neurons. We also provided evidence that the inclusion of NMD-stimulating cassette exons into mature mRNAs is temporally coordinated with NMD-independent gene repression mechanisms. Our study provides an accessible workflow for the discovery and prioritization of AS-NMD targets. It further argues that the AS-NMD pathway plays a widespread role in developing neurons by facilitating the downregulation of functionally related non-neuronal genes.
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替代剪接与无义介导的衰变相结合,协调了小鼠神经元发育过程中非神经元基因的下调
替代性前 mRNA 剪接(AS)与称为无义介导衰变(NMD)的 mRNA 质量控制机制之间的功能耦合可调节转录本的丰度。以前的研究已经发现了发育中神经元中存在这种调控的几个例子。然而,人们对 AS-NMD 在这种情况下的系统级效应知之甚少。我们开发了一个 R 软件包--factR2,它提供了一套全面的 AS-NMD 分析功能。利用这一工具,我们对进行诱导神经元分化的多能干细胞中的基因表达进行了纵向分析。我们的分析发现了数以百计的 AS-NMD 事件,这些事件具有调节基因表达的巨大潜力。值得注意的是,这种调控在发育下调基因的特定功能组中代表性明显过高。在将替代盒外显子纳入成熟 mRNA 时,发现它们与基因下调的关系尤其密切。通过将生物信息学分析与 CRISPR/Cas9 基因组编辑及其他实验方法相结合,我们发现受 RNA 结合蛋白 PTBP1 调节的 NMD 刺激盒式外显子会抑制其基因在发育中神经元中的表达。我们还提供了证据,证明将 NMD 刺激盒外显子纳入成熟 mRNA 与 NMD 依赖性基因抑制机制在时间上是协调的。我们的研究为 AS-NMD 靶点的发现和优先排序提供了一个简便易行的工作流程。它进一步论证了 AS-NMD 通路通过促进功能相关的非神经元基因的下调,在发育中的神经元中发挥着广泛的作用。
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来源期刊
Genome Biology
Genome Biology Biochemistry, Genetics and Molecular Biology-Genetics
CiteScore
21.00
自引率
3.30%
发文量
241
审稿时长
2 months
期刊介绍: Genome Biology stands as a premier platform for exceptional research across all domains of biology and biomedicine, explored through a genomic and post-genomic lens. With an impressive impact factor of 12.3 (2022),* the journal secures its position as the 3rd-ranked research journal in the Genetics and Heredity category and the 2nd-ranked research journal in the Biotechnology and Applied Microbiology category by Thomson Reuters. Notably, Genome Biology holds the distinction of being the highest-ranked open-access journal in this category. Our dedicated team of highly trained in-house Editors collaborates closely with our esteemed Editorial Board of international experts, ensuring the journal remains on the forefront of scientific advances and community standards. Regular engagement with researchers at conferences and institute visits underscores our commitment to staying abreast of the latest developments in the field.
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