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Optimized design of antisense oligomers for targeted rRNA depletion

机译:针对靶向rRNA耗尽的反义低聚物的优化设计

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摘要

RNA sequencing (RNA-seq) is extensively used to quantify gene expression transcriptome-wide. Although often paired with polyadenylate (poly(A)) selection to enrich for messenger RNA (mRNA), many applications require alternate approaches to counteract the high proportion of ribosomal RNA (rRNA) in total RNA. Recently, digestion using RNaseH and antisense DNA oligomers tiling target rRNAs has emerged as an alternative to commercial rRNA depletion kits. Here, we present a streamlined, more economical RNaseH-mediated rRNA depletion with substantially lower up-front costs, using shorter antisense oligos only sparsely tiled along the target RNA in a 5-min digestion reaction. We introduce a novel Web tool, Oligo-ASST, that simplifies oligo design to target regions with optimal thermodynamic properties, and additionally can generate compact, common oligo pools that simultaneously target divergent RNAs, e.g. across different species. We demonstrate the efficacy of these strategies by generating rRNA-depletion oligos for Xenopus laevis and for zebrafish, which expresses two distinct versions of rRNAs during embryogenesis. The resulting RNA-seq libraries reduce rRNA to <5% of aligned reads, on par with poly(A) selection, and also reveal expression of many non-adenylated RNA species. Oligo-ASST is freely available at https://mtleelab.pitt.edu/oligo to design antisense oligos for any taxon or to target any abundant RNA for depletion.
机译:RNA测序(RNA-SEQ)广泛用于量化转录物宽的基因表达。虽然通常与聚腺苷酸(聚(a))选择富含信使RNA(mRNA),但许多应用需要替代方法来抵消总RNA中的核糖体RNA(RRNA)的高比例。最近,使用RNASEH和反义DNA低聚物的消化旋转靶RRNA作为商业RRNA耗尽试剂盒的替代品。在这里,我们介绍了一种简化的更经济的RNA族介导的RRNA耗竭,其具有基本上降低的上前成本,使用较短的反义寡核苷酸在5分钟的消化反应中沿靶RNA稀疏地稀疏。我们介绍了一种新颖的Web工具,Oligo-ASST,简化了Oligo设计,以实现具有最佳热力学性质的目标区域,另外可以产生紧凑的普通寡核桃池,同时靶向不同的RNA,例如,跨越不同的物种。我们通过为Xenopus Laevis和斑马鱼产生RRNA-Fepletion寡核苷酸来证明这些策略的功效,其在胚胎发生期间表达两个不同版本的RRNA。得到的RNA-SEQ文库将RRNA减少到<5%的对齐读数,与聚(a)选择相提并论,也揭示了许多非腺苷酸化RNA物种的表达。 Oligo-Asst在https://mtleelab.pitt.edu/oligo自由提供,以设计任何分类群的反义寡核苷酸或靶向任何丰富的RNA进行耗尽。

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