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AKT constitutes a signal-promoted alternative exon-junction complex that regulates nonsense-mediated mRNA decay.

Molecular cell · 2022 · Vol. 82 (15) · pp. 2779-2796.e10

Abstract

Despite a long appreciation for the role of nonsense-mediated mRNA decay (NMD) in destroying faulty, disease-causing mRNAs and maintaining normal, physiologic mRNA abundance, additional effectors that regulate NMD activity in mammalian cells continue to be identified. Here, we describe a haploid-cell genetic screen for NMD effectors that has unexpectedly identified 13 proteins constituting the AKT signaling pathway. We show that AKT supersedes UPF2 in exon-junction complexes (EJCs) that are devoid of RNPS1 but contain CASC3, defining an unanticipated insulin-stimulated EJC. Without altering UPF1 RNA binding or ATPase activity, AKT-mediated phosphorylation of the UPF1 CH domain at T151 augments UPF1 helicase activity, which is critical for NMD and also decreases the dependence of helicase activity on ATP. We demonstrate that upregulation of AKT signaling contributes to the hyperactivation of NMD that typifies Fragile X syndrome, as exemplified using FMR1-KO neural stem cells derived from induced pluripotent stem cells.

Publication Types

["Journal Article", "Research Support, N.I.H., Extramural", "Research Support, Non-U.S. Gov't"]

Keywords

MeSH Terms

["Animals", "Codon, Nonsense", "Exons", "Mammals", "Nonsense Mediated mRNA Decay", "Proto-Oncogene Proteins c-akt", "RNA Helicases", "RNA, Messenger", "Trans-Activators", "Transcription Factors"]

Funding

R01 HG004659 NHGRI NIH HHS (United States)
U19 MH107367 NIMH NIH HHS (United States)
S10 OD025242 NIH HHS (United States)
R01 GM074593 NIGMS NIH HHS (United States)
R21 NS104878 NINDS NIH HHS (United States)
R35 GM149268 NIGMS NIH HHS (United States)
R01 GM059614 NIGMS NIH HHS (United States)
S10 OD021489 NIH HHS (United States)
T90 DE021985 NIDCR NIH HHS (United States)