Re-adenylation by TENT5A enhances efficacy of SARS-CoV-2 mRNA vaccines.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 40240603.
- Also identified by DOI 10.1038/s41586-025-08842-1 and PMC identifier 12095053.
- Licence recorded as CC BY.
- The licence permits redistribution, so the abstract is shown in full and the full text is available from the publisher.
Abstract
Despite the widespread use of mRNA vaccines against COVID-19, little is known about the metabolism of therapeutic RNAs. Here we use nanopore sequencing<sup>1-3</sup> to analyse individual therapeutic mRNA molecules, focusing on their poly(A) tails. We show that the Moderna mRNA-1273 vaccine<sup>4</sup> has a poly(A) tail of around 100 nucleotides, followed by an mΨCmΨAG sequence. In cell lines, mRNA-1273 undergoes rapid degradation initiated by mΨCmΨAG removal, followed by CCR4-NOT-mediated deadenylation. However, in medically relevant preclinical models, particularly in macrophages, mRNA-1273 poly(A) tails are extended to up to 200 nucleotides by the TENT5A poly(A) polymerase<sup>5-7</sup>, which is induced by the vaccine. Re-adenylation, which stabilizes target mRNAs, is consistently observed in synthetic mRNAs that encode proteins targeted to the endoplasmic reticulum, such as ovalbumin or antigens from Zika virus<sup>8</sup> or the malaria parasite<sup>9</sup>. The extent of re-adenylation varies: the BioNTech-Pfizer BNT162b2 vaccine<sup>10</sup> shows less potent re-adenylation than mRNA-1273, which correlates with a smaller proportion of membrane-associated BNT162b2. This highlights the crucial role of spatial accessibility to ER-resident TENT5A in determining re-adenylation efficiency. In vivo, TENT5A is expressed in immune cells that take up mRNA vaccine, and TENT5A deficiency reduces specific immunoglobulin production for mRNA vaccines after immunization in mice. Overall, our findings reveal a principle for enhancing the efficacy of therapeutic mRNAs, paving the way for improvement.
Medical subject headings
- COVID-19
- SARS-CoV-2
- COVID-19 Vaccines
- RNA, Messenger
- Vaccine Efficacy
- Poly A