Structural insights into the p97-Ufd1-Np14 complex

p97/VCP (Cdc48 in yeast) is an essential and abundant member of the AAA+ family of ATPases and is involved in a number of diverse cellular pathways through interactions with different adaptor proteins. The two most characterized adaptors for p97 are p47 and the Ufd1 (ubiquitin fusion degradation 1)-...

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Veröffentlicht in:Proceedings of the National Academy of Sciences - PNAS 2007-01, Vol.104 (2), p.467
Hauptverfasser: Pye, Valerie E, Beuron, Fabienne, Keetch, Catherine A, McKeown, Ciaran
Format: Artikel
Sprache:eng
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Zusammenfassung:p97/VCP (Cdc48 in yeast) is an essential and abundant member of the AAA+ family of ATPases and is involved in a number of diverse cellular pathways through interactions with different adaptor proteins. The two most characterized adaptors for p97 are p47 and the Ufd1 (ubiquitin fusion degradation 1)-Np14 (nuclear protein localization 4) complex. p47 directs p97 to membrane fusion events and has been shown to be involved in protein degradation. The Ufd1-Np14 complex directs p97 to an essential role in endoplasmic reticulum-associated degradation and an important role in mitotic spindle disassembly postmitosis. Here we describe the structural features of the Ufd1-Np14 complex and its interaction with p97 with the aid of EM and other biophysical techniques. The Ufd1-Np14 heterodimer has an elongated bibbed structure that is [asymptotically =]80 x 30 Å in dimension. One Ufd1-Np14 heterodimer is shown to interact with one p97 hexamer to form the p97-Ufd1-Np14 complex. The Ufd1-Np14 heterodimer emanates from one region on the periphery of the N-D1 plane of the p97 hexamer. Intriguingly, the p97-p47 and the p97-Ufd1-Np14 complexes are significantly different in stoichiometry, symmetry, and quaternary arrangement, reflecting their specific actions and their ability to interact with additional cofactors that cooperate with p97 in diverse cellular pathways. [PUBLICATION ABSTRACT]
ISSN:0027-8424
1091-6490