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March 26, 2026International Journal of Molecular Sciences0 citationsOpen Access

Controlling In Vitro mRNA Polyadenylation by Monitoring Poly(A) Polymerase Consumption of ATP

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JSJanja SkokPTPooja TiwariTSTina Vodopivec Seravalli

Key Points

  • The research aims to develop a method for controlling poly(A) tail length in mRNA through ATP consumption monitoring.
  • Utilized poly(A) polymerase (PAP) for post-transcriptional polyadenylation.
  • Monitored ATP consumption in real-time to predict poly(A) tail length.
  • Employed monolith reverse-phase chromatography for validation of predictions.
  • Successfully generated poly(A) tails in the 300–700 nucleotide range.
  • Longer poly(A) tails resulted in better performance of mRNA in cell-based assays compared to shorter tails.
  • The methodology presents a scalable control strategy for mRNA production.

Abstract

The poly(A) tail of mRNA plays a vital role in mRNA transcript stability, translational efficiency, and immunogenicity. Co-transcriptionally polyadenylated in vitro transcribed (IVT) mRNAs typically contain poly(A) tails of 50–120 nucleotide tail length due to limitations in production of template pDNA with longer poly(A) sequences. In contrast, post-transcriptional enzymatic polyadenylation of mRNA with poly(A) polymerase (PAP) presents a modular alternative to increase the tail length. However, the lack of real-time control strategies for PAP-mediated tailing has limited its broader applicability in mRNA production. Here, we develop a methodology for controlling poly(A) tail length in post-transcriptional polyadenylation of mRNA that uses adenosine triphosphate (ATP) consumption measured at-line to predict the poly(A) tail length. We establish a novel analytical method based on monolith reverse-phase chromatography to validate the poly(A) predictions. We were able to produce longer poly(A) tails and accurately determine their length in 300–700 nt range. The resulting longer poly(A) tailed reporter mRNAs outperformed the encoded and shorter poly(A) tailed mRNAs in cell-based assays. This work presents a new strategy for controlled post-transcriptional polyadenylation using ATP consumption as a process control metric, an approach which may in future be expanded to other NTP-dependent enzymatic conversions.

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Cite This Study

Skok et al. (2026) studied this question.

synapsesocial.com/papers/69c4cd5afdc3bde44891986fhttps://doi.org/10.3390/ijms27072928
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