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Enhanced CLIP Uncovers IMP Protein-RNA Targets in Human Pluripotent Stem Cells Important for Cell Adhesion and Survival

机译:增强的CLIP发现人多能干细胞中对细胞粘附和存活重要的IMP蛋白RNA目标

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Human pluripotent stem cells (hPSCs) require precise control of post-transcriptional RNA networks to maintain proliferation and survival. Using enhanced UV crosslinking and immunoprecipitation (eCLIP), we identify RNA targets of the IMP/IGF2BP family of RNA-binding proteins in hPSCs. At the broad region and binding site levels, IMP1 and IMP2 show reproducible binding to a large and overlapping set of 3' UTR-enriched targets. RNA Bind-N-seq applied to recombinant full-length IMP1 and IMP2 reveals CA-rich motifs that are enriched in eCLIP-defined binding sites. We observe that IMP1 loss in hPSCs recapitulates IMP1 phenotypes, including a reduction in cell adhesion and increase in cell death. For cell adhesion, we find IMP1 maintains levels of integrin mRNA specifically regulating RNA stability of ITGB5 in hPSCs. Additionally, we show that IMP1 can be linked to hPSC survival via direct target BCL2. Thus, transcriptome-wide binding profiles identify hPSC targets modulating well-characterized IMP1 roles.
机译:人类多能干细胞(hPSC)需要精确控制转录后RNA网络以维持增殖和存活。使用增强的紫外线交联和免疫沉淀(eCLIP),我们鉴定了hPSCs中RNA结合蛋白IMP / IGF2BP家族的RNA靶标。在广阔的区域和结合位点水平,IMP1和IMP2与大量重叠的3'UTR富集的靶标具有可再现的结合。应用于重组全长IMP1和IMP2的RNA Bind-N-seq显示了富含eCLIP定义的结合位点的富含CA的基序。我们观察到,hPSC中的IMP1丢失概括了IMP1的表型,包括细胞粘附的减少和细胞死亡的增加。对于细胞粘附,我们发现IMP1维持整联蛋白mRNA的水平,专门调节hPSC中ITGB5的RNA稳定性。此外,我们表明IMP1可以通过直接靶BCL2链接到hPSC生存。因此,转录组范围内的绑定配置文件确定hPSC目标调节良好表征的IMP1角色。

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