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Regulation of RUVBL1-RUVBL2 AAA-ATPases by the nonsense-mediated mRNA decay factor DHX34, as evidenced by Cryo-EM.
López-Perrote, Andres; Hug, Nele; González-Corpas, Ana; Rodríguez, Carlos F; Serna, Marina; García-Martín, Carmen; Boskovic, Jasminka; Fernandez-Leiro, Rafael; Caceres, Javier F; Llorca, Oscar.
Affiliation
  • López-Perrote A; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Hug N; MRC Human Genetics Unit, Institute of Genetics and Molecular Medicine, University of Edinburghx, Edinburgh, United Kingdom.
  • González-Corpas A; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Rodríguez CF; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Serna M; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • García-Martín C; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Boskovic J; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Fernandez-Leiro R; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
  • Caceres JF; MRC Human Genetics Unit, Institute of Genetics and Molecular Medicine, University of Edinburghx, Edinburgh, United Kingdom.
  • Llorca O; Structural Biology Programme, Spanish National Cancer Research Centre (CNIO), Madrid, Spain.
Elife ; 92020 11 18.
Article in En | MEDLINE | ID: mdl-33205750
ABSTRACT
Nonsense-mediated mRNA decay (NMD) is a surveillance pathway that degrades aberrant mRNAs and also regulates the expression of a wide range of physiological transcripts. RUVBL1 and RUVBL2 AAA-ATPases form an hetero-hexameric ring that is part of several macromolecular complexes such as INO80, SWR1, and R2TP. Interestingly, RUVBL1-RUVBL2 ATPase activity is required for NMD activation by an unknown mechanism. Here, we show that DHX34, an RNA helicase regulating NMD initiation, directly interacts with RUVBL1-RUVBL2 in vitro and in cells. Cryo-EM reveals that DHX34 induces extensive changes in the N-termini of every RUVBL2 subunit in the complex, stabilizing a conformation that does not bind nucleotide and thereby down-regulates ATP hydrolysis of the complex. Using ATPase-deficient mutants, we find that DHX34 acts exclusively on the RUVBL2 subunits. We propose a model, where DHX34 acts to couple RUVBL1-RUVBL2 ATPase activity to the assembly of factors required to initiate the NMD response.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Carrier Proteins / DNA Helicases / RNA Helicases / Cryoelectron Microscopy / ATPases Associated with Diverse Cellular Activities Type of study: Prognostic_studies Limits: Humans Language: En Journal: Elife Year: 2020 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Carrier Proteins / DNA Helicases / RNA Helicases / Cryoelectron Microscopy / ATPases Associated with Diverse Cellular Activities Type of study: Prognostic_studies Limits: Humans Language: En Journal: Elife Year: 2020 Document type: Article Affiliation country: