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A transferable SARS-CoV-2 IRES module enables dual translation initiation for enhanced antigen expression in COVID-19 mRNA vaccines

Authors
 Seo, Han Young  ;  Jung, Haewon  ;  Lee, Se-Young  ;  Jung, Hae-Gwang  ;  Son, Yu-Min  ;  Bak, Yeonju  ;  Hwang, Seo-Yeon  ;  Kim, Jung-Hee  ;  Park, In Ho  ;  Shin, Jeon-Soo  ;  Oh, Jong-Won 
Citation
 MOLECULAR THERAPY NUCLEIC ACIDS, Vol.37(2), 2026-06 
Article Number
 102886 
Journal Title
 MOLECULAR THERAPY NUCLEIC ACIDS 
ISSN
 2162-2531 
Issue Date
2026-06
Keywords
4E-BP1 ; BNT162b2 raxtozinameran ; cap-independent translation ; dual translation initiation ; hybrid 5′UTR ; hypoxia resistance ; IRES ; mRNA vaccine ; MT: Clinical Applications ; SARS-CoV-2 SL4.5–5
Abstract
mRNA vaccines are a versatile platform for infectious disease prevention and therapeutic applications, yet their performance is limited by exclusive reliance on cap-dependent translation, which is markedly suppressed under hypoxia and cellular stress. Here, we report a hybrid 5 ' untranslated region (5 ' UTR) that enables dual translation initiation via both cap-dependent and internal ribosome entry site (IRES) mechanisms. This element integrates a minimal stem-loop 4.5-5 module (SL4.5-5) from the SARS-CoV-2 genomic 5 ' UTR, in which a conserved 5 '-UUUCGU-3 ' motif within the SL5 loops is essential for function. Incorporating the SL4.5-5 module downstream of conventional 5 ' UTRs confers cap-independent translation capacity and enhances overall translation efficiency under translation-restrictive conditions such as hypoxia. When applied to the 5 ' UTRs of clinically validated COVID-19 vaccines, this module improves antigen expression in both modified and unmodified mRNAs. Notably, unmodified Omicron BA.5 and XBB.1.5 mRNA vaccines containing this element elicited potent humoral and cellular immune responses at sub-microgram doses, comparable to those induced by the approved N1-methylpseu-douridine-incorporated mRNA vaccine, raxtozinameran. These findings identify SL4.5-5 as a modular IRES element that enables dual translation initiation, promoting efficient protein synthesis under cap-dependent translation-restrictive conditions and expanding the functional landscape of mRNA vaccines and therapeutics beyond cap-dependent limitations.
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DOI
10.1016/j.omtn.2026.102886
Appears in Collections:
1. College of Medicine (의과대학) > Research Institute (부설연구소) > 1. Journal Papers
1. College of Medicine (의과대학) > Dept. of Microbiology (미생물학교실) > 1. Journal Papers
Yonsei Authors
Park, Inho(박인호) ORCID logo https://orcid.org/0000-0003-2190-5469
Shin, Jeon Soo(신전수) ORCID logo https://orcid.org/0000-0002-8294-3234
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/211761
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