Department of Pathology and Immunology, Baylor College of Medicine, Houston, TX, 77030, USA.
Department of Cell Biology and Physiology, School of Medicine, University of North Carolina at Chapel Hill, NC, 27599, USA.
Sci Rep. 2016 Oct 19;6:35550. doi: 10.1038/srep35550.
The RNA binding protein Celf1 regulates alternative splicing in the nucleus and mRNA stability and translation in the cytoplasm. Celf1 is strongly down-regulated during mouse postnatal heart development. Its re-induction in adults induced severe heart failure and reversion to fetal splicing and gene expression patterns. However, the impact of Celf1 depletion on cardiac transcriptional and posttranscriptional dynamics in neonates has not been addressed. We found that homozygous Celf1 knock-out neonates exhibited cardiac dysfunction not observed in older homozygous animals, although homozygous mice are smaller than wild type littermates throughout development. RNA-sequencing of mRNA from homozygous neonatal hearts identified a network of cell cycle genes significantly up-regulated and down-regulation of ion transport and circadian genes. Cell cycle genes are enriched for Celf1 binding sites supporting a regulatory role in mRNA stability of these transcripts. We also identified a cardiac splicing network coordinated by Celf1 depletion. Target events contain multiple Celf1 binding sites and enrichment in GU-rich motifs. Identification of direct Celf1 targets will advance our knowledge in the mechanisms behind developmental networks regulated by Celf1 and diseases where Celf1 is mis-regulated.
RNA 结合蛋白 Celf1 在核内调节选择性剪接,在细胞质中调节 mRNA 稳定性和翻译。Celf1 在小鼠出生后心脏发育过程中强烈下调。在成体中重新诱导 Celf1 的表达会导致严重的心衰,并使剪接和基因表达模式恢复为胎儿状态。然而,Celf1 耗竭对新生儿心脏转录和转录后动力学的影响尚未得到解决。我们发现,纯合 Celf1 敲除的新生儿表现出心脏功能障碍,而在年龄较大的纯合动物中没有观察到这种情况,尽管在整个发育过程中,纯合子小鼠比野生型同窝仔鼠小。来自纯合新生儿心脏的 mRNA 的 RNA-seq 鉴定出一个细胞周期基因网络,这些基因显著上调,而离子转运和昼夜节律基因下调。细胞周期基因富含 Celf1 结合位点,支持这些转录物的 mRNA 稳定性的调节作用。我们还鉴定出一个由 Celf1 耗竭协调的心脏剪接网络。靶事件包含多个 Celf1 结合位点和富含 GU 丰富基序的富集。直接 Celf1 靶标的鉴定将推进我们对 Celf1 调节的发育网络背后的机制以及 Celf1 失调的疾病的认识。