| Literature DB >> 33028677 |
Alexander E Conicella1,2,3, Rui Huang4,2,3, Zev A Ripstein1,2, Ai Nguyen5, Eric Wang6, Thomas Löhr6, Peter Schuck5, Michele Vendruscolo6, John L Rubinstein1,2,7, Lewis E Kay4,2,3,8.
Abstract
VCP/p97, an enzyme critical to proteostasis, is regulated through interactions with protein adaptors targeting it to specific cellular tasks. One such adaptor, p47, forms a complex with p97 to direct lipid membrane remodeling. Here, we use NMR and other biophysical methods to study the structural dynamics of p47 and p47-p97 complexes. Disordered regions in p47 are shown to be critical in directing intra-p47 and p47-p97 interactions via a pair of previously unidentified linear motifs. One of these, an SHP domain, regulates p47 binding to p97 in a manner that depends on the nucleotide state of p97. NMR and electron cryomicroscopy data have been used as restraints in molecular dynamics trajectories to develop structural ensembles for p47-p97 complexes in adenosine diphosphate (ADP)- and adenosine triphosphate (ATP)-bound conformations, highlighting differences in interactions in the two states. Our study establishes the importance of intrinsically disordered regions in p47 for the formation of functional p47-p97 complexes.Entities:
Keywords: intrinsically disordered; methyl-TROSY; p47; p97/VCP; structural dynamics
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Year: 2020 PMID: 33028677 PMCID: PMC7585011 DOI: 10.1073/pnas.2013920117
Source DB: PubMed Journal: Proc Natl Acad Sci U S A ISSN: 0027-8424 Impact factor: 11.205