TY - JOUR
T1 - Structure of the human 26S proteasome at a resolution of 3.9 Å
AU - Schweitzer, Andreas
AU - Aufderheide, Antje
AU - Rudack, Till
AU - Beck, Florian
AU - Pfeifer, Günter
AU - Plitzko, Jürgen M.
AU - Sakata, Eri
AU - Schulten, Klaus
AU - Förster, Friedrich
AU - Baumeister, Wolfgang
N1 - We thank Christopher Aylett for providing a script for conversion of EM density and Fourier shell correlation into MTZ files; Andreas Bracher for assistance with reciprocal space refinement; and Maximilian Scheurer for assistance with automating the real space refinement tools. The authors acknowledge the computer time provided by the National Science Foundation (NSF)-funded Extreme Science and Engineering Discovery Environment MCA93S028 and a Blue Waters Illinois allocation, which is part of the Blue Waters sustained-petascale computing project supported by the NSF (Awards OCI-0725070 and ACI-1238993) and the state of Illinois. This work was supported by the German Science Foundation (Excellence Cluster CIPSM and SFB-1035/Project A01); NSF Grant PHY1430124; and National Institutes of Health Grant 9P41GM104601. E.S. is supported by Marie Curie Career Integration Grant. T.R. acknowledges support as a Feodor Lynen von Humboldt Postdoctoral Fellow.
PY - 2016/7/12
Y1 - 2016/7/12
N2 - Protein degradation in eukaryotic cells is performed by the Ubiquitin-Proteasome System (UPS). The 26S proteasome holocomplex consists of a core particle (CP) that proteolytically degrades polyubiquitylated proteins, and a regulatory particle (RP) containing the AAA-ATPase module. This module controls access to the proteolytic chamber inside the CP and is surrounded by non-ATPase subunits (Rpns) that recognize substrates and deubiquitylate them before unfolding and degradation. The architecture of the 26S holocomplex is highly conserved between yeast and humans. The structure of the human 26S holocomplex described here reveals previously unidentified features of the AAA-ATPase heterohexamer. One subunit, Rpt6, has ADP bound, whereas the other five have ATP in their binding pockets. Rpt6 is structurally distinct from the other five Rpt subunits, most notably in its pore loop region. For Rpns, the map reveals two main, previously undetected, features: the C terminus of Rpn3 protrudes into the mouth of the ATPase ring; and Rpn1 and Rpn2, the largest proteasome subunits, are linked by an extended connection. The structural features of the 26S proteasome observed in this study are likely to be important for coordinating the proteasomal subunits during substrate processing.
AB - Protein degradation in eukaryotic cells is performed by the Ubiquitin-Proteasome System (UPS). The 26S proteasome holocomplex consists of a core particle (CP) that proteolytically degrades polyubiquitylated proteins, and a regulatory particle (RP) containing the AAA-ATPase module. This module controls access to the proteolytic chamber inside the CP and is surrounded by non-ATPase subunits (Rpns) that recognize substrates and deubiquitylate them before unfolding and degradation. The architecture of the 26S holocomplex is highly conserved between yeast and humans. The structure of the human 26S holocomplex described here reveals previously unidentified features of the AAA-ATPase heterohexamer. One subunit, Rpt6, has ADP bound, whereas the other five have ATP in their binding pockets. Rpt6 is structurally distinct from the other five Rpt subunits, most notably in its pore loop region. For Rpns, the map reveals two main, previously undetected, features: the C terminus of Rpn3 protrudes into the mouth of the ATPase ring; and Rpn1 and Rpn2, the largest proteasome subunits, are linked by an extended connection. The structural features of the 26S proteasome observed in this study are likely to be important for coordinating the proteasomal subunits during substrate processing.
KW - AAA-ATPase
KW - Cryo-electron microscopy
KW - Integrative modeling
KW - Proteostasis
UR - https://www.scopus.com/pages/publications/84978042613
UR - https://www.scopus.com/pages/publications/84978042613#tab=citedBy
U2 - 10.1073/pnas.1608050113
DO - 10.1073/pnas.1608050113
M3 - Article
C2 - 27342858
AN - SCOPUS:84978042613
SN - 0027-8424
VL - 113
SP - 7816
EP - 7821
JO - Proceedings of the National Academy of Sciences of the United States of America
JF - Proceedings of the National Academy of Sciences of the United States of America
IS - 28
ER -