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An Alternative UPF1 Isoform Drives Conditional Remodeling of Nonsense-mediated MRNA Decay

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Journal EMBO J
Date 2022 Apr 11
PMID 35403729
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Abstract

The nonsense-mediated mRNA decay (NMD) pathway monitors translation termination in order to degrade transcripts with premature stop codons and regulate thousands of human genes. Here, we show that an alternative mammalian-specific isoform of the core NMD factor UPF1, termed UPF1 , enables condition-dependent remodeling of NMD specificity. Previous studies indicate that the extension of a conserved regulatory loop in the UPF1 helicase core confers a decreased propensity to dissociate from RNA upon ATP hydrolysis relative to UPF1 , the major UPF1 isoform. Using biochemical and transcriptome-wide approaches, we find that UPF1 can circumvent the protective RNA binding proteins PTBP1 and hnRNP L to preferentially bind and down-regulate transcripts with long 3'UTRs normally shielded from NMD. Unexpectedly, UPF1 supports induction of NMD on new populations of substrate mRNAs in response to activation of the integrated stress response and impaired translation efficiency. Thus, while canonical NMD is abolished by moderate translational repression, UPF1 activity is enhanced, offering the possibility to rapidly rewire NMD specificity in response to cellular stress.

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References
1.
Dockendorff T, Labrador M . The Fragile X Protein and Genome Function. Mol Neurobiol. 2018; 56(1):711-721. DOI: 10.1007/s12035-018-1122-9. View

2.
Chamieh H, Ballut L, Bonneau F, Le Hir H . NMD factors UPF2 and UPF3 bridge UPF1 to the exon junction complex and stimulate its RNA helicase activity. Nat Struct Mol Biol. 2007; 15(1):85-93. DOI: 10.1038/nsmb1330. View

3.
Anders S, Reyes A, Huber W . Detecting differential usage of exons from RNA-seq data. Genome Res. 2012; 22(10):2008-17. PMC: 3460195. DOI: 10.1101/gr.133744.111. View

4.
Ge Z, Quek B, Beemon K, Hogg J . Polypyrimidine tract binding protein 1 protects mRNAs from recognition by the nonsense-mediated mRNA decay pathway. Elife. 2016; 5. PMC: 4764554. DOI: 10.7554/eLife.11155. View

5.
Akopian D, Shen K, Zhang X, Shan S . Signal recognition particle: an essential protein-targeting machine. Annu Rev Biochem. 2013; 82:693-721. PMC: 3805129. DOI: 10.1146/annurev-biochem-072711-164732. View