p97 functions as an auxiliary factor to facilitate TM domain extraction during CFTR ER-associated degradation
Open Access
- 14 September 2006
- journal article
- research article
- Published by Springer Nature in The EMBO Journal
- Vol. 25 (19) , 4557-4566
- https://doi.org/10.1038/sj.emboj.7601307
Abstract
The AAA‐ATPase (ATPase associated with various cellular activities) p97 has been implicated in the degradation of misfolded and unassembled proteins in the endoplasmic reticulum (ERAD). To better understand its role in this process, we used a reconstituted cell‐free system to define the precise contribution of p97 in degrading immature forms of the polytopic, multi‐domain protein CFTR (cystic fibrosis transmembrane conductance regulator). Although p97 augmented both the rate and the extent of CFTR degradation, it was not obligatorily required for ERAD. Only a 50% decrease in degradation was observed in the complete absence of p97. Moreover, p97 specifically stimulated the degradation of CFTR transmembrane (TM) domains but had no effect on isolated cytosolic domains. Consistent with this, p97‐mediated extraction of intact TM domains was independent of proteolytic cleavage and influenced by TM segment hydrophobicity, indicating that the relative contribution of p97 is partially determined by substrate stability. Thus, we propose that p97 functions in ERAD as a nonessential but important ancillary component to the proteasome where it facilitates substrate presentation and increases the degradation rate and efficiency of stable (TM) domains.Keywords
This publication has 62 references indexed in Scilit:
- The protein translocation channel binds proteasomes to the endoplasmic reticulum membraneThe EMBO Journal, 2005
- RETRACTED: ATP Hydrolysis-Dependent Disassembly of the 26S Proteasome Is Part of the Catalytic CycleCell, 2005
- Side chain and backbone contributions of Phe508 to CFTR foldingNature Structural & Molecular Biology, 2004
- A foldable CFTRΔF508 biogenic intermediate accumulates upon inhibition of the Hsc70–CHIP E3 ubiquitin ligaseThe Journal of cell biology, 2004
- Cystic Fibrosis Transmembrane Conductance Regulator Degradation Depends on the Lectins Htm1p/EDEM and the Cdc48 Protein Complex in YeastMolecular Biology of the Cell, 2004
- Distinct Roles for the AAA ATPases NSF and p97 in the Secretory PathwayMolecular Biology of the Cell, 2004
- Cooperativity and Flexibility of Cystic Fibrosis Transmembrane Conductance Regulator Transmembrane Segments Participate in Membrane Localization of a Charged ResidueJournal of Biological Chemistry, 2002
- Functional profiling of the Saccharomyces cerevisiae genomeNature, 2002
- Redundancy of Mammalian Proteasome β Subunit Function during Endoplasmic Reticulum Associated DegradationBiochemistry, 2001
- Apoprotein B Degradation Is Promoted by the Molecular Chaperones hsp90 and hsp70Published by Elsevier ,2001