Structural roles of Ump1 and β-subunit propeptides in proteasome biogenesis

Author:

Mark Eric1,Ramos Paula C2,Kayser Fleur1,Höckendorff Jörg2,Dohmen R Jürgen2ORCID,Wendler Petra1ORCID

Affiliation:

1. Institute of Biochemistry and Biology, Department of Biochemistry, University of Potsdam

2. Institute for Genetics, Center of Molecular Biosciences, Department of Biology, Faculty of Mathematics and Natural Sciences, University of Cologne

Abstract

The yeastpre1-1(β4-S142F) mutant accumulates late 20S proteasome core particle precursor complexes (late-PCs). We report a 2.1 Å cryo-EM structure of this intermediate with full-length Ump1 trapped inside, and Pba1-Pba2 attached to the α-ring surfaces. The structure discloses intimate interactions of Ump1 with β2- and β5-propeptides, which together fill most of the antechambers between the α- and β-rings. The β5-propeptide is unprocessed and separates Ump1 from β6 and β7. The β2-propeptide is disconnected from the subunit by autocatalytic processing and localizes between Ump1 and β3. A comparison of different proteasome maturation states reveals that maturation goes along with global conformational changes in the rings, initiated by structuring of the proteolytic sites and their autocatalytic activation. In thepre1-1strain, β2 is activated first enabling processing of β1-, β6-, and β7-propeptides. Subsequent maturation of β5 and β1 precedes degradation of Ump1, tightening of the complex, and finally release of Pba1-Pba2.

Funder

Deutsche Forschungsgemeinschaft

EC | Horizon 2020 Framework Programme

Publisher

Life Science Alliance, LLC

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