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cyPhyRNA-seq:一种通过捕获具有 2'、3' 环磷酸和 5' 羟基末端的 RNA 来检测具有活性的自我切割核酶的全基因组 RNA-seq 方法。

cyPhyRNA-seq: a genome-scale RNA-seq method to detect active self-cleaving ribozymes by capturing RNAs with 2',3' clic hosphates and 5' droxyl ends.

机构信息

Department of Life Science, Institute for Biochemistry, Leipzig, Germany.

Bioinformatics Group, Department of Computer Science, and Interdisciplinary Center for Bioinformatics, Leipzig University, Leipzig, Germany.

出版信息

RNA Biol. 2021 Nov 12;18(sup2):818-831. doi: 10.1080/15476286.2021.1999105. Epub 2021 Dec 14.

Abstract

Self-cleaving ribozymes are catalytically active RNAs that cleave themselves into a 5'-fragment with a 2',3'-cyclic phosphate and a 3'-fragment with a 5'-hydroxyl. They are widely applied for the construction of synthetic RNA devices and RNA-based therapeutics. However, the targeted discovery of self-cleaving ribozymes remains a major challenge. We developed a transcriptome-wide method, called cyPhyRNA-seq, to screen for ribozyme cleavage fragments in total RNA extract. This approach employs the specific ligation-based capture of ribozyme 5'-fragments using a variant of the tRNA ligase we engineered. To capture ribozyme 3'-fragments, they are enriched from total RNA by enzymatic treatments. We optimized and enhanced the individual steps of cyPhyRNA-seq and in spike-in experiments. Then, we applied cyPhyRNA-seq to total RNA isolated from the bacterium and detected self-cleavage of the three predicted type II hammerhead ribozymes, whose activity had not been examined to date. cyPhyRNA-seq can be used for the global analysis of active self-cleaving ribozymes with the advantage to capture both ribozyme cleavage fragments from total RNA. Especially in organisms harbouring many self-cleaving RNAs, cyPhyRNA-seq facilitates the investigation of cleavage activity. Moreover, this method has the potential to be used to discover novel self-cleaving ribozymes in different organisms. [Figure: see text].

摘要

自我剪切核酶是具有催化活性的 RNA,能够将自身切割成带有 2'、3'环磷酸和 3'羟基的 5'片段和带有 5'羟基的 3'片段。它们被广泛应用于合成 RNA 器件和基于 RNA 的治疗方法的构建。然而,靶向发现自我剪切核酶仍然是一个主要挑战。我们开发了一种全转录组方法,称为 cyPhyRNA-seq,用于筛选总 RNA 提取物中的核酶切割片段。该方法采用了我们设计的 tRNA 连接酶的变体,通过特定的连接捕获核酶的 5'片段。为了捕获核酶 3'片段,通过酶处理从总 RNA 中富集它们。我们优化和增强了 cyPhyRNA-seq 的各个步骤,并在 Spike-in 实验中进行了验证。然后,我们将 cyPhyRNA-seq 应用于从细菌中分离的总 RNA,并检测到三个预测的 II 型锤头核酶的自我切割,这些核酶的活性迄今尚未被检测到。cyPhyRNA-seq 可用于对具有从总 RNA 捕获两个核酶切割片段优势的活性自我剪切核酶进行全面分析。特别是在含有许多自我剪切 RNA 的生物体中,cyPhyRNA-seq 便于研究切割活性。此外,该方法有可能用于在不同的生物体中发现新的自我剪切核酶。[图:见正文]。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/79d8/8782182/ce429c872159/KRNB_A_1999105_UF0001_C.jpg

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