Production of MarathonRT and its comparison with commercial reverse transcriptases for tRNA sequencing library preparation
Over the past decade, groundbreaking discoveries have cemented transfer RNAs (tRNAs) as versatile regulators of translation and cellular function. As tRNA research gains momentum, several high-throughput sequencing methods have emerged for quantitative analysis of tRNA isoacceptors in cells. However, the strong secondary structure and rich post-transcriptional modification of most tRNA molecules pose significant challenges for reverse transcriptases, thus hampering library preparation and introducing quantification biases. Current approaches rely on processive next generation reverse transcriptases (ngRTs) - they successfully overcome these problems, albeit with the potential caveat of high experimental costs. Here, we introduce a recombinant MarathonRT (MRT) protein with a C-terminal chitin binding domain (CBD), for which we present a simple and robust one-step purification protocol that yields over 18,000 enzymatic reactions per 0.5 L of expression culture. We also developed an affordable colorimetry-based method for determining the specific activity of these enzymes. Importantly, we benchmarked our in-house produced MRT-CBD using the mim-tRNAseq workflow and show that it's performance matches that of commercially available ngRTs. In addition, we implemented the use of a rapid tRNA spin column-based enrichment method for tRNA-seq and LC-MS applications, establishing it as a viable alternative to conventional gel-extraction. Combined, we provide an easily implementable MarathonRT purification protocol along with an improved workflow that significantly reduces the time and cost of tRNA-seq library preparation.
Authors
- Matea Radešić
- Pavlína Gregorová (ORCID: https://orcid.org/0000-0002-0737-8845)
- L. Peter Sarin (ORCID: https://orcid.org/0000-0003-4400-3601)
- Jenni K. Pedor
Institutions
- University of Helsinki (FI)
Publication Details
- Journal
- RNA Biology
- Published
- 2026-09-18
- DOI
- https://doi.org/10.1080/15476286.2026.2720028
- Primary Topic
- RNA modifications and cancer
- Type
- article
- Field-Weighted Citation Impact
- 0.00
Funders
- Academy of Finland