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Small heat shock proteins target mutant cystic fibrosis transmembrane conductance regulator for degradation via a small ubiquitin-like modifier–dependent pathway
- Source :
- Molecular Biology of the Cell
- Publication Year :
- 2013
- Publisher :
- American Society for Cell Biology (ASCB), 2013.
-
Abstract
- Selective degradation of the mutant protein responsible for most cystic fibrosis, F508del cystic fibrosis transmembrane conductance regulator (CFTR), is initiated by Hsp27, which associates with the small ubiquitin-like modifier (SUMO) E2, Ubc9. They modify F508del with SUMO-2/3, directing F508del to a SUMO-targeted ubiquitin ligase, RNF4. This work implicates SUMO and RNF4 in quality control of a cytosolic transmembrane protein.<br />Small heat shock proteins (sHsps) bind destabilized proteins during cell stress and disease, but their physiological functions are less clear. We evaluated the impact of Hsp27, an sHsp expressed in airway epithelial cells, on the common protein misfolding mutant that is responsible for most cystic fibrosis. F508del cystic fibrosis transmembrane conductance regulator (CFTR), a well-studied protein that is subject to cytosolic quality control, selectively associated with Hsp27, whose overexpression preferentially targeted mutant CFTR to proteasomal degradation. Hsp27 interacted physically with Ubc9, the small ubiquitin-like modifier (SUMO) E2 conjugating enzyme, implying that F508del SUMOylation leads to its sHsp-mediated degradation. Enhancing or disabling the SUMO pathway increased or blocked Hsp27’s ability to degrade mutant CFTR. Hsp27 promoted selective SUMOylation of F508del NBD1 in vitro and of full-length F508del CFTR in vivo, which preferred endogenous SUMO-2/3 paralogues that form poly-chains. The SUMO-targeted ubiquitin ligase (STUbL) RNF4 recognizes poly-SUMO chains to facilitate nuclear protein degradation. RNF4 overexpression elicited F508del degradation, whereas Hsp27 knockdown blocked RNF4’s impact on mutant CFTR. Similarly, the ability of Hsp27 to degrade F508del CFTR was lost during overexpression of dominant-negative RNF4. These findings link sHsp-mediated F508del CFTR degradation to its SUMOylation and to STUbL-mediated targeting to the ubiquitin–proteasome system and thereby implicate this pathway in the disposal of an integral membrane protein.
- Subjects :
- Proteasome Endopeptidase Complex
genetic processes
Mutant
HSP27 Heat-Shock Proteins
SUMO protein
Cystic Fibrosis Transmembrane Conductance Regulator
Gene Expression
macromolecular substances
Biology
Ubiquitin-conjugating enzyme
environment and public health
03 medical and health sciences
Ubiquitin
Humans
Nuclear protein
Molecular Biology
Integral membrane protein
Heat-Shock Proteins
Sequence Deletion
030304 developmental biology
0303 health sciences
030302 biochemistry & molecular biology
Nuclear Proteins
Sumoylation
Articles
Cell Biology
Molecular biology
Cystic fibrosis transmembrane conductance regulator
Ubiquitin ligase
enzymes and coenzymes (carbohydrates)
HEK293 Cells
Cell Biology of Disease
Gene Knockdown Techniques
Proteolysis
Ubiquitin-Conjugating Enzymes
embryonic structures
biology.protein
Molecular Chaperones
Transcription Factors
Subjects
Details
- ISSN :
- 19394586 and 10591524
- Volume :
- 24
- Database :
- OpenAIRE
- Journal :
- Molecular Biology of the Cell
- Accession number :
- edsair.doi.dedup.....9d17c96075fce6a72fbd95267dd248c9
- Full Text :
- https://doi.org/10.1091/mbc.e12-09-0678