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May 10, 2026Advanced Science0 citationsOpen Access

DMS‐MaPseq and DREEM Analyses Implicate the Critical Role of RNA Structural Dynamics in Turnip Yellow Mosaic Virus Pathogenicity

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JZJiaying ZhuCLChanghao LiCOChisimbily Onyia

Key Points

  • This research aims to investigate the role of RNA structural dynamics in the pathogenicity of Turnip Yellow Mosaic Virus (TYMV).
  • Decoded in vivo genome-wide RNA secondary structure of TYMV.
  • Examined structural dynamics and conformations of the 3’ tRNA-like structure (TLS).
  • Compared findings with prior in vitro assays.
  • Identified a complex RNA secondary structure landscape for TYMV in vivo.
  • Demonstrated that 3’ TLS forms a dynamic alternative conformation crucial for viral replication.
  • Confirmed that the pseudoknot structure on 3’ TLS is essential for translation.

Abstract

ABSTRACT Increasing evidence indicates that RNA secondary structure (RSS) affects the life cycle of the RNA viruses in mammals. However, the specific roles of RSS in plant virus propagation are under‐studied. Here we decoded the in vivo genome‐wide RSS of Turnip Yellow Mosaic Virus (TYMV). We found that TYMV possesses a complicated RSS landscape across the genome in vivo. Furthermore, the viral RSS is dynamic in most parts of the genome. We discovered that the earlier reported pseudoknot on the 3’ tRNA‐like structure (3’ TLS) from in vitro assays indeed exists in vivo. Importantly, 3’ TLS also forms a novel alternative conformation that lacks the pseudoknot character, suggestive of the dynamics between two conformations. The 3’ TLS structural dynamics is critical for viral replication, whereas the pseudoknot structure is pivotal for translation. Thus, our findings characterized the in vivo genome‐wide RNA structural feature of TYMV and provided valuable insights for viral replication and translation in cells.

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Cite This Study

Zhu et al. (2026) studied this question.

synapsesocial.com/papers/6a002222c8f74e3340f9d165https://doi.org/10.1002/advs.75614
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