Molecular Cell
Volume 81, Issue 3, 4 February 2021, Pages 599-613.e8
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Article
Structural analysis of RIG-I-like receptors reveals ancient rules of engagement between diverse RNA helicases and TRIM ubiquitin ligases

https://doi.org/10.1016/j.molcel.2020.11.047Get rights and content
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Highlights

  • TRIM65 selectively recognizes MDA5 filaments using PSpry bivalency

  • TRIM65 PSpry binds α1/α3 helices in the Hel2 domain of MDA5

  • RIPLET recognizes RIG-I using a similar epitope in the helicase domain

  • Distinct TRIM proteins recognize common epitopes in diverse helicases using bivalency

Summary

RNA helicases and E3 ubiquitin ligases mediate many critical functions in cells, but their actions have largely been studied in distinct biological contexts. Here, we uncover evolutionarily conserved rules of engagement between RNA helicases and tripartite motif (TRIM) E3 ligases that lead to their functional coordination in vertebrate innate immunity. Using cryoelectron microscopy and biochemistry, we show that RIG-I-like receptors (RLRs), viral RNA receptors with helicase domains, interact with their cognate TRIM/TRIM-like E3 ligases through similar epitopes in the helicase domains. Their interactions are avidity driven, restricting the actions of TRIM/TRIM-like proteins and consequent immune activation to RLR multimers. Mass spectrometry and phylogeny-guided biochemical analyses further reveal that similar rules of engagement may apply to diverse RNA helicases and TRIM/TRIM-like proteins. Our analyses suggest not only conserved substrates for TRIM proteins but also, unexpectedly, deep evolutionary connections between TRIM proteins and RNA helicases, linking ubiquitin and RNA biology throughout animal evolution.

Keywords

RIG-I
MDA5
LGP2
Dicer
TRIM
E3 ubiquitin ligase
innate immunity
TRIM65
RIPLET
TRIM25

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Present address: School of Pharmaceutical Science and Technology, Tianjin University, Tianjin 300072, China

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