Translational T-box riboswitches bind tRNA by modulating conformational flexibility.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 39097611.
- Also identified by DOI 10.1038/s41467-024-50885-x and PMC identifier 11297988.
- Licence recorded as CC BY-NC-ND.
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Abstract
T-box riboswitches are noncoding RNA elements involved in genetic regulation of most Gram-positive bacteria. They regulate amino acid metabolism by assessing the aminoacylation status of tRNA, subsequently affecting the transcription or translation of downstream amino acid metabolism-related genes. Here we present single-molecule FRET studies of the Mycobacterium tuberculosis IleS T-box riboswitch, a paradigmatic translational T-box. Results support a two-step binding model, where the tRNA anticodon is recognized first, followed by interactions with the NCCA sequence. Furthermore, after anticodon recognition, tRNA can transiently dock into the discriminator domain even in the absence of the tRNA NCCA-discriminator interactions. Establishment of the NCCA-discriminator interactions significantly stabilizes the fully bound state. Collectively, the data suggest high conformational flexibility in translational T-box riboswitches; and supports a conformational selection model for NCCA recognition. These findings provide a kinetic framework to understand how specific RNA elements underpin the binding affinity and specificity required for gene regulation.
Medical subject headings
- Riboswitch
- Nucleic Acid Conformation
- RNA, Transfer
- Mycobacterium tuberculosis
- Anticodon
- RNA, Bacterial