MMTV RNA packaging requires an extended long-range interaction for productive Gag binding to packaging signals

The packaging of genomic RNA (gRNA) into retroviral particles relies on the specific recognition by the Gag precursor of packaging signals (Psi), which maintain a complex secondary structure through long-range interactions (LRIs). However, it remains unclear whether the binding of Gag to Psi alone i...

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Veröffentlicht in:PLoS biology 2024-10, Vol.22 (10), p.e3002827
Hauptverfasser: Prabhu, Suresha G, Pillai, Vineeta N, Ali, Lizna Mohamed, Vivet-Boudou, Valérie, Chameettachal, Akhil, Bernacchi, Serena, Mustafa, Farah, Marquet, Roland, Rizvi, Tahir A
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Sprache:eng
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Zusammenfassung:The packaging of genomic RNA (gRNA) into retroviral particles relies on the specific recognition by the Gag precursor of packaging signals (Psi), which maintain a complex secondary structure through long-range interactions (LRIs). However, it remains unclear whether the binding of Gag to Psi alone is enough to promote RNA packaging and what role LRIs play in this process. Using mouse mammary tumor virus (MMTV), we investigated the effects of mutations in 4 proposed LRIs on gRNA structure and function. Our findings revealed the presence of an unsuspected extended LRI, and hSHAPE revealed that maintaining a wild-type-like Psi structure is crucial for efficient packaging. Surprisingly, filter-binding assays demonstrated that most mutants, regardless of their packaging capability, exhibited significant binding to Pr77Gag, suggesting that Gag binding to Psi is insufficient for efficient packaging. Footprinting experiments indicated that efficient RNA packaging is promoted when Pr77Gag binds to 2 specific sites within Psi, whereas binding elsewhere in Psi does not lead to efficient packaging. Taken together, our results suggest that the 3D structure of the Psi/Pr77Gag complex regulates the assembly of viral particles around gRNA, enabling effective discrimination against other viral and cellular RNAs that may also bind Gag efficiently.
ISSN:1545-7885
1544-9173
1545-7885
DOI:10.1371/journal.pbio.3002827