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A low-bias and sensitive small RNA library preparation method using randomized splint ligation

机译:使用随机夹板连接的低偏见和敏感的小RNA文库制备方法

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Small RNAs are important regulators of gene expression and are involved in human development and disease. Next generation sequencing (NGS) allows for scalable, genome-wide studies of small RNA; however, current methods are challenged by low sensitivity and high bias, limiting their ability to capture an accurate representation of the cellular small RNA population. Several studies have shown that this bias primarily arises during the ligation of single-strand adapters during library preparation, and that this ligation bias is magnified by 2′-O-methyl modifications (2′OMe) on the 3′ terminal nucleotide. In this study, we developed a novel library preparation process using randomized splint ligation with a cleavable adapter, a design which resolves previous challenges associated with this ligation strategy. We show that a randomized splint ligation based workflow can reduce bias and increase the sensitivity of small RNA sequencing for a wide variety of small RNAs, including microRNA (miRNA) and tRNA fragments as well as 2′OMe modified RNA, including Piwi-interacting RNA and plant miRNA. Finally, we demonstrate that this workflow detects more differentially expressed miRNA between tumorous and matched normal tissues. Overall, this library preparation process allows for highly accurate small RNA sequencing and will enable studies of 2′OMe modified RNA with new levels of detail.
机译:小RNA是基因表达的重要调节因素,参与人类发展和疾病。下一代测序(NGS)允许可扩展,基因组的小RNA研究;然而,目前的方法受到低灵敏度和高偏差的挑战,限制了它们捕获细胞小RNA群的准确表示的能力。几项研究表明,在图书馆制剂期间,该偏差主要出现在单链适配器期间,并且该连接偏压在3'末端核苷酸上通过2'-O-甲基修饰(2'Ome)放大。在这项研究中,我们开发了一种使用可分割适配器的随机夹板连接进行了一种新颖的图书馆准备过程,该设计是解决与这种连接策略相关的先前挑战的设计。我们表明基于随机的夹板连接的工作流程可以减少偏压并提高小RNA测序对各种小RNA的敏感性,包括MicroRNA(miRNA)和TRNA片段以及2'Ome改性RNA,包括PIWI-相互作用的RNA和植物miRNA。最后,我们证明了该工作流程检测肿瘤和匹配的正常组织之间的更差异表达的miRNA。总体而言,该库制备过程允许高精度的小RNA测序,并将能够研究具有新的细节水平的2'OME改性RNA。

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