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Tytuł pozycji:

Toward an understanding of the Cdc48/p97 ATPase [version 1; referees: 4 approved]

Tytuł:
Toward an understanding of the Cdc48/p97 ATPase [version 1; referees: 4 approved]
Autorzy:
Nicholas Bodnar
Tom Rapoport
Temat:
Biocatalysis
Biomacromolecule-Ligand Interactions
Cell Growth & Division
Macromolecular Assemblies & Machines
Membrane Proteins & Energy Transduction
Membranes & Sorting
Protein Folding
Medicine
Science
Źródło:
F1000Research, Vol 6 (2017)
Wydawca:
F1000 Research Ltd, 2017.
Rok publikacji:
2017
Kolekcja:
LCC:Medicine
LCC:Science
Typ dokumentu:
article
Opis pliku:
electronic resource
Język:
English
ISSN:
2046-1402
Relacje:
https://f1000research.com/articles/6-1318/v1; https://doaj.org/toc/2046-1402
DOI:
10.12688/f1000research.11683.1
Dostęp URL:
https://doaj.org/article/68b559d745fb40cfafc4e7cc54c2cb60  Link otwiera się w nowym oknie
Numer akcesji:
edsdoj.68b559d745fb40cfafc4e7cc54c2cb60
Czasopismo naukowe
A conserved AAA+ ATPase, called Cdc48 in yeast and p97 or VCP in metazoans, plays an essential role in many cellular processes by segregating polyubiquitinated proteins from complexes or membranes. For example, in endoplasmic reticulum (ER)-associated protein degradation (ERAD), Cdc48/p97 pulls polyubiquitinated, misfolded proteins out of the ER and transfers them to the proteasome. Cdc48/p97 consists of an N-terminal domain and two ATPase domains (D1 and D2). Six Cdc48 monomers form a double-ring structure surrounding a central pore. Cdc48/p97 cooperates with a number of different cofactors, which bind either to the N-terminal domain or to the C-terminal tail. The mechanism of Cdc48/p97 action is poorly understood, despite its critical role in many cellular systems. Recent in vitro experiments using yeast Cdc48 and its heterodimeric cofactor Ufd1/Npl4 (UN) have resulted in novel mechanistic insight. After interaction of the substrate-attached polyubiquitin chain with UN, Cdc48 uses ATP hydrolysis in the D2 domain to move the polypeptide through its central pore, thereby unfolding the substrate. ATP hydrolysis in the D1 domain is involved in substrate release from the Cdc48 complex, which requires the cooperation of the ATPase with a deubiquitinase (DUB). Surprisingly, the DUB does not completely remove all ubiquitin molecules; the remaining oligoubiquitin chain is also translocated through the pore. Cdc48 action bears similarities to the translocation mechanisms employed by bacterial AAA ATPases and the eukaryotic 19S subunit of the proteasome, but differs significantly from that of a related type II ATPase, the NEM-sensitive fusion protein (NSF). Many questions about Cdc48/p97 remain unanswered, including how it handles well-folded substrate proteins, how it passes substrates to the proteasome, and how various cofactors modify substrates and regulate its function.

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