Department of Life Science, Institute for Biochemistry, Leipzig, Germany.
Bioinformatics Group, Department of Computer Science, and Interdisciplinary Center for Bioinformatics, Leipzig University, Leipzig, Germany.
RNA Biol. 2021 Nov 12;18(sup2):818-831. doi: 10.1080/15476286.2021.1999105. Epub 2021 Dec 14.
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].
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]。