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Molecular mechanisms of recruitment, function and regulation of UPF1 in histone mRNA decay

Machado de Amorim, A.; Xue, G.; Dittmers, T.; He, W.; Lewandowski, S.; Perez-Borrajero, C.; Bethmann, J.; Mateva, N.; Krage, C.; Nandana, V.; Hennig, J.; Urlaub, H.; Marzluff, W. F.; Chakrabarti, S.

2025-02-24 biochemistry
10.1101/2025.02.23.639735 bioRxiv
Show abstract

Animal replication-dependent histone mRNAs end in a conserved stem loop (SL) instead of the canonical poly(A) tail present in all other eukaryotic mRNAs. Degradation of the histone SL at the end of the S-phase is initiated by the stem-loop binding protein SLBP and its interplay with the RNA helicase UPF1 and the exoribonuclease 3hExo. We report direct interactions between SLBP and UPF1 and show that the unstructured SLBP N-terminus wraps around the UPF1 helicase core, contacting it at multiple sites. Although binding of SLBP to UPF1 impedes unwinding activity, it is critical for efficient histone mRNA decay in cells, as unwinding of the SL facilitates degradation by 3hExo. Here we show that the UPF1-activator, UPF2, binds 3hExo, and that UPF2-mediated activation of UPF1 overrides the inhibitory effect of SLBP. Our results highlight the intricate network of UPF1-centric protein-protein and protein/RNA interactions that fine-tunes its unwinding activity and orchestrates timely and efficient degradation of histone mRNA.

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