| Literature DB >> 31249134 |
Ian Cooney1, Han Han1, Michael G Stewart1, Richard H Carson2, Daniel T Hansen1, Janet H Iwasa1, John C Price2, Christopher P Hill3, Peter S Shen3.
Abstract
The cellular machine Cdc48 functions in multiple biological pathways by segregating its protein substrates from a variety of stable environments such as organelles or multi-subunit complexes. Despite extensive studies, the mechanism of Cdc48 has remained obscure, and its reported structures are inconsistent with models of substrate translocation proposed for other AAA+ ATPases (adenosine triphosphatases). Here, we report a 3.7-angstrom-resolution structure of Cdc48 in complex with an adaptor protein and a native substrate. Cdc48 engages substrate by adopting a helical configuration of substrate-binding residues that extends through the central pore of both of the ATPase rings. These findings indicate a unified hand-over-hand mechanism of protein translocation by Cdc48 and other AAA+ ATPases.Entities:
Mesh:
Substances:
Year: 2019 PMID: 31249134 PMCID: PMC7362759 DOI: 10.1126/science.aax0486
Source DB: PubMed Journal: Science ISSN: 0036-8075 Impact factor: 63.714