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Deconvolution of seed and RNA-binding protein crosstalk in RNAi-based functional genomics

机译:基于RNAi的功能基因组学中种子和RNA结合蛋白串扰的去卷积

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摘要

RNA interference (RNAi) is a major, powerful platform for gene perturbations, but is restricted by off-target mechanisms. Communication between RNAs, small RNAs, and RNA-binding proteins (RBPs) is a pervasive feature of cellular RNA networks. We present a crosstalk scenario, designated as crosstalk with endogenous RBPs' (ceRBP), in which small interfering RNAs or microRNAs with seed sequences that overlap RBP motifs have extended biological effects by perturbing endogenous RBP activity. Systematic analysis of small interfering RNA (siRNA) off-target data and genome-wide RNAi cancer lethality screens using 501 human cancer cell lines, a cancer dependency map, identified that seed-to-RBP crosstalk is widespread, contributes to off-target activity, and affects RNAi performance. Specifically, deconvolution of the interactions between gene knockdown and seed-mediated silencing effects in the cancer dependency map showed widespread contributions of seed-to-RBP crosstalk to growth-phenotype modulation. These findings suggest a novel aspect of microRNA biology and offer a basis for improvement of RNAi agents and RNAi-based functional genomics.
机译:RNA干扰(RNAi)是基因扰动的主要强大平台,但受到偏离目标机制的限制。 RNA,小RNA和RNA结合蛋白(RBPS)之间的通信是细胞RNA网络的普遍特征。我们提出了一种串扰场景,被称为具有内源性Rbps'(CERBP)的串扰,其中小干扰RNA或微小RNA和微小RNA,通过扰动内源性RBP活性延长了RBP基序的延长了生物学效应。使用501人癌细胞系的小干扰RNA(siRNA)偏离目标数据和基因组RNAi癌症致死性筛选的系统分析,癌症依赖图,发现种子对RBP串扰是普遍的,有助于偏移靶向活动,并影响RNAI性能。具体地,基因敲低和种子介导的癌症级沉默效应之间的相互作用的去卷积显示出种子对RBP串扰对生长 - 表型调节的广泛贡献。这些研究结果表明了MicroRNA生物学的新颖方面,并为改善RNAi药剂和基于RNAi的功能基因组学提供了基础。

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