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RNF219 attenuates global mRNA decay through inhibition of CCR4-NOT complex-mediated deadenylation.


ABSTRACT: The CCR4-NOT complex acts as a central player in the control of mRNA turnover and mediates accelerated mRNA degradation upon HDAC inhibition. Here, we explored acetylation-induced changes in the composition of the CCR4-NOT complex by purification of the endogenously tagged scaffold subunit NOT1 and identified RNF219 as an acetylation-regulated cofactor. We demonstrate that RNF219 is an active RING-type E3 ligase which stably associates with CCR4-NOT via NOT9 through a short linear motif (SLiM) embedded within the C-terminal low-complexity region of RNF219. By using a reconstituted six-subunit human CCR4-NOT complex, we demonstrate that RNF219 inhibits deadenylation through the direct interaction of the α-helical SLiM with the NOT9 module. Transcriptome-wide mRNA half-life measurements reveal that RNF219 attenuates global mRNA turnover in cells, with differential requirement of its RING domain. Our results establish RNF219 as an inhibitor of CCR4-NOT-mediated deadenylation, whose loss upon HDAC inhibition contributes to accelerated mRNA turnover.

SUBMITTER: Poetz F 

PROVIDER: S-EPMC8660800 | biostudies-literature | 2021 Dec

REPOSITORIES: biostudies-literature

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RNF219 attenuates global mRNA decay through inhibition of CCR4-NOT complex-mediated deadenylation.

Poetz Fabian F   Corbo Joshua J   Levdansky Yevgen Y   Spiegelhalter Alexander A   Lindner Doris D   Magg Vera V   Lebedeva Svetlana S   Schweiggert Jörg J   Schott Johanna J   Valkov Eugene E   Stoecklin Georg G  

Nature communications 20211209 1


The CCR4-NOT complex acts as a central player in the control of mRNA turnover and mediates accelerated mRNA degradation upon HDAC inhibition. Here, we explored acetylation-induced changes in the composition of the CCR4-NOT complex by purification of the endogenously tagged scaffold subunit NOT1 and identified RNF219 as an acetylation-regulated cofactor. We demonstrate that RNF219 is an active RING-type E3 ligase which stably associates with CCR4-NOT via NOT9 through a short linear motif (SLiM) e  ...[more]

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