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The CryoEM structure of the Saccharomyces cerevisiae ribosome maturation factor Rea1.


ABSTRACT: The biogenesis of 60S ribosomal subunits is initiated in the nucleus where rRNAs and proteins form pre-60S particles. These pre-60S particles mature by transiently interacting with various assembly factors. The ~5000 amino-acid AAA+ ATPase Rea1 (or Midasin) generates force to mechanically remove assembly factors from pre-60S particles, which promotes their export to the cytosol. Here we present three Rea1 cryoEM structures. We visualise the Rea1 engine, a hexameric ring of AAA+ domains, and identify an ?-helical bundle of AAA2 as a major ATPase activity regulator. The ?-helical bundle interferes with nucleotide-induced conformational changes that create a docking site for the substrate binding MIDAS domain on the AAA +ring. Furthermore, we reveal the architecture of the Rea1 linker, which is involved in force generation and extends from the AAA+ ring. The data presented here provide insights into the mechanism of one of the most complex ribosome maturation factors.

SUBMITTER: Sosnowski P 

PROVIDER: S-EPMC6286127 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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The CryoEM structure of the <i>Saccharomyces cerevisiae</i> ribosome maturation factor Rea1.

Sosnowski Piotr P   Urnavicius Linas L   Boland Andreas A   Fagiewicz Robert R   Busselez Johan J   Papai Gabor G   Schmidt Helgo H  

eLife 20181126


The biogenesis of 60S ribosomal subunits is initiated in the nucleus where rRNAs and proteins form pre-60S particles. These pre-60S particles mature by transiently interacting with various assembly factors. The ~5000 amino-acid AAA+ ATPase Rea1 (or Midasin) generates force to mechanically remove assembly factors from pre-60S particles, which promotes their export to the cytosol. Here we present three Rea1 cryoEM structures. We visualise the Rea1 engine, a hexameric ring of AAA+ domains, and iden  ...[more]

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