Compromised nonsense-mediated RNA decay results in truncated RNA-binding protein production upon DUX4 expression

受损的无义介导的 RNA 衰变导致 DUX4 表达时产生截短的 RNA 结合蛋白

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作者:Amy E Campbell, Michael C Dyle, Roberto Albanese, Tyler Matheny, Kavitha Sudheendran, Michael A Cortázar, Thomas Forman, Rui Fu, Austin E Gillen, Marvin H Caruthers, Stephen N Floor, Lorenzo Calviello, Sujatha Jagannathan

Abstract

Nonsense-mediated RNA decay (NMD) degrades transcripts carrying premature termination codons. NMD is thought to prevent the synthesis of toxic truncated proteins. However, whether loss of NMD results in widespread production of truncated proteins is unclear. A human genetic disease, facioscapulohumeral muscular dystrophy (FSHD), features acute inhibition of NMD upon expression of the disease-causing transcription factor, DUX4. Using a cell-based model of FSHD, we show production of truncated proteins from physiological NMD targets and find that RNA-binding proteins are enriched for aberrant truncations. The NMD isoform of one RNA-binding protein, SRSF3, is translated to produce a stable truncated protein, which is detected in FSHD patient-derived myotubes. Ectopic expression of truncated SRSF3 confers toxicity, and its downregulation is cytoprotective. Our results delineate the genome-scale impact of NMD loss. This widespread production of potentially deleterious truncated proteins has implications for FSHD biology as well as other genetic diseases where NMD is therapeutically modulated.

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