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sCLIP—an integrated platform to study RNA–protein interactomes in biomedical research: identification of CSTF2tau in alternative processing of small nuclear RNAs

机译:sCLIP-在生物医学研究中研究RNA-蛋白质相互作用组的综合平台:在小核RNA的替代加工中鉴定CSTF2tau

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摘要

RNA-binding proteins (RBPs) are central for gene expression by controlling the RNA fate from birth to decay. Various disorders arising from perturbations of RNA–protein interactions document their critical function. However, deciphering their function is complex, limiting the general functional elucidation of this growing class of proteins and their contribution to (patho)physiology. Here, we present sCLIP, a simplified and robust platform for genome-wide interrogation of RNA–protein interactomes based on crosslinking-immunoprecipitation and high-throughput sequencing. sCLIP exploits linear amplification of the immunoprecipitated RNA improving the complexity of the sequencing-library despite significantly reducing the amount of input material and omitting several purification steps. Additionally, it permits a radiolabel-free visualization of immunoprecipitated RNA. In a proof of concept, we identify that CSTF2tau binds many previously not recognized RNAs including histone, snoRNA and snRNAs. CSTF2tau-binding is associated with internal oligoadenylation resulting in shortened snRNA isoforms subjected to rapid degradation. We provide evidence for a new mechanism whereby CSTF2tau controls the abundance of snRNAs resulting in alternative splicing of several RNAs including ANK2 with critical roles in tumorigenesis and cardiac function. Combined with a bioinformatic pipeline sCLIP thus uncovers new functions for established RBPs and fosters the illumination of RBP–protein interaction landscapes in health and disease.
机译:通过控制从出生到衰老的RNA命运,RNA结合蛋白(RBP)对于基因表达至关重要。 RNA-蛋白质相互作用的扰动引起的各种疾病证明了它们的关键功能。然而,解密它们的功能很复杂,限制了这种不断增长的蛋白质的一般功能阐明及其对(病理)生理学的贡献。在这里,我们介绍sCLIP,这是一种基于交联免疫沉淀和高通量测序的,用于RNA-蛋白质相互作用组的全基因组研究的简化而强大的平台。 sCLIP利用免疫沉淀RNA的线性扩增提高了测序文库的复杂性,尽管大大减少了输入材料的数量并省略了几个纯化步骤。另外,它允许无放射性标记的免疫沉淀RNA可视化。在概念验证中,我们确定CSTF2tau结合了许多以前未被识别的RNA,包括组蛋白,snoRNA和snRNA。 CSTF2tau绑定与内部寡聚腺苷酸化相关,导致缩短的snRNA亚型经历快速降解。我们提供了一种新的机制的证据,据此CSTF2tau可控制snRNA的丰度,从而导致包括ANK2在内的几种RNA的选择性剪接在肿瘤发生和心脏功能中起关键作用。因此,与生物信息学管道相结合,sCLIP揭示了已建立的RBP的新功能,并促进了RBP-蛋白质相互作用在健康和疾病中的应用。

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