小RNA序列:RNA 5'端转接器的连接问题及其规避方法。

Journal of biological methods Pub Date : 2019-01-01 Epub Date: 2019-02-20 DOI:10.14440/jbm.2019.269
Lodoe Lama, Jose Cobo, Diego Buenaventura, Kevin Ryan
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引用次数: 13

摘要

小RNA cDNA测序文库的制备依赖于适配器与RNA末端的无偏连接。末端有5'凹槽的小RNA是酶转接器连接的不良底物,但如果不监控文库制备步骤,这种5'转接器连接问题可能无法检测到。在这里,我们使用几个pre- mirna样的发夹来说明5' RNA末端连接问题的严重性,这些发夹允许我们扩展问题的定义,包括靠近发夹茎的5'末端,无论是嵌入的还是短延伸的。核糖体分析方法可以避免困难的5'适配器连接,但据报道,通常用于循环cDNA的酶是有偏差的,这使这种解决方法的好处受到质疑。以TS2126 RNA连接酶1(又名CircLigase)为环化酶,设计了cDNA第一链环化的偏倚检验。所有可能的二核苷酸都以相似的效率环连接。为了在核糖体分析方法中重新线性化第一链cDNA,我们引入了一种改进的方法,其中在逆转录酶引物的测序引物结合位点之间放置单个核糖核苷酸,随后作为RNase a重新线性化的点。我们将这一步骤纳入核糖体分析方法,并描述了一种完整的改进文库制备方法,Coligo-seq。对二级结构靠近5'端的小RNA进行测序。该方法接受多种5'修饰RNA,包括5'单磷酸化RNA,通过构建HeLa细胞microRNA cDNA文库证明了这一点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Small RNA-seq: The RNA 5'-end adapter ligation problem and how to circumvent it.

Small RNA-seq: The RNA 5'-end adapter ligation problem and how to circumvent it.

Small RNA-seq: The RNA 5'-end adapter ligation problem and how to circumvent it.

Small RNA-seq: The RNA 5'-end adapter ligation problem and how to circumvent it.

The preparation of small RNA cDNA sequencing libraries depends on the unbiased ligation of adapters to the RNA ends. Small RNA with 5' recessed ends are poor substrates for enzymatic adapter ligation, but this 5' adapter ligation problem can go undetected if the library preparation steps are not monitored. Here we illustrate the severity of the 5' RNA end ligation problem using several pre-miRNA-like hairpins that allow us to expand the definition of the problem to include 5' ends close to a hairpin stem, whether recessed or in a short extension. The ribosome profiling method can avoid a difficult 5' adapter ligation, but the enzyme typically used to circularize the cDNA has been reported to be biased, calling into question the benefit of this workaround. Using the TS2126 RNA ligase 1 (a.k.a. CircLigase) as the circularizing enzyme, we devised a bias test for the circularization of first strand cDNA. All possible dinucleotides were circle-ligated with similar efficiency. To re-linearize the first strand cDNA in the ribosome profiling approach, we introduce an improved method wherein a single ribonucleotide is placed between the sequencing primer binding sites in the reverse transcriptase primer, which later serves as the point of re-linearization by RNase A. We incorporate this step into the ribosomal profiling method and describe a complete improved library preparation method, Coligo-seq, for the sequencing of small RNA with secondary structure close to the 5' end. This method accepts a variety of 5' modified RNA, including 5' monophosphorylated RNA, as demonstrated by the construction of a HeLa cell microRNA cDNA library.

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