The Antagonistic Gene Paralogs Upf3a and Upf3b Govern Nonsense-Mediated RNA Decay

Publication date

2016-04-07

Authors

Shum, Eleen Y
Jones, Samantha H
Shao, Ada
Dumdie, Jennifer
Krause, Matthew D
Chan, Wai-Kin
Lou, Chih-Hong
Espinoza, Josh L
Song, Hye-Won
Phan, Mimi H

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

Gene duplication is a major evolutionary force driving adaptation and speciation, as it allows for the acquisition of new functions and can augment or diversify existing functions. Here, we report a gene duplication event that yielded another outcome--the generation of antagonistic functions. One product of this duplication event--UPF3B--is critical for the nonsense-mediated RNA decay (NMD) pathway, while its autosomal counterpart--UPF3A--encodes an enigmatic protein previously shown to have trace NMD activity. Using loss-of-function approaches in vitro and in vivo, we discovered that UPF3A acts primarily as a potent NMD inhibitor that stabilizes hundreds of transcripts. Evidence suggests that UPF3A acquired repressor activity through simple impairment of a critical domain, a rapid mechanism that may have been widely used in evolution. Mice conditionally lacking UPF3A exhibit "hyper" NMD and display defects in embryogenesis and gametogenesis. Our results support a model in which UPF3A serves as a molecular rheostat that directs developmental events.

Keywords

Animals, Cell Line, Tumor, Embryonic Development, Evolution, Molecular, Gametogenesis, Genes, Duplicate, HeLa Cells, Humans, Mice, Nonsense Mediated mRNA Decay, RNA-Binding Proteins, Journal Article, Research Support, N.I.H., Extramural, Research Support, Non-U.S. Gov't, Taverne

Citation

Shum, E Y, Jones, S H, Shao, A, Dumdie, J, Krause, M D, Chan, W-K, Lou, C-H, Espinoza, J L, Song, H-W, Phan, M H, Ramaiah, M, Huang, L, McCarrey, J R, Peterson, K J, De Rooij, D G, Cook-Andersen, H & Wilkinson, M F 2016, 'The Antagonistic Gene Paralogs Upf3a and Upf3b Govern Nonsense-Mediated RNA Decay', Cell, vol. 165, no. 2, pp. 382-95. https://doi.org/10.1016/j.cell.2016.02.046