Ubiquitin ligases play a pivotal role in substrate recognition and ubiquitin transfer, yet little is known about the regulation of their catalytic activity. Nedd4 (neural-precursor-cell-expressed, developmentally down-regulated 4)-2 is an E3 ubiquitin ligase composed of a C2 domain, four WW domains (protein–protein interaction domains containing two conserved tryptophan residues) that bind PY motifs (L/PPXY) and a ubiquitin ligase HECT (homologous with E6-associated protein C-terminus) domain. In the present paper we show that the WW domains of Nedd4-2 bind (weakly) to a PY motif (LPXY) located within its own HECT domain and inhibit auto-ubiquitination. Pulse–chase experiments demonstrated that mutation of the HECT PY-motif decreases the stability of Nedd4-2, suggesting that it is involved in stabilization of this E3 ligase. Interestingly, the HECT PY-motif mutation does not affect ubiquitination or down-regulation of a known Nedd4-2 substrate, ENaC (epithelial sodium channel). ENaC ubiquitination, in turn, appears to promote Nedd4-2 self-ubiquitination. These results support a model in which the inter- or intra-molecular WW-domain–HECT PY-motif interaction stabilizes Nedd4-2 by preventing self-ubiquitination. Substrate binding disrupts this interaction, allowing self-ubiquitination of Nedd4-2 and subsequent degradation, resulting in down-regulation of Nedd4-2 once it has ubiquitinated its target. These findings also point to a novel mechanism employed by a ubiquitin ligase to regulate itself differentially compared with substrate ubiquitination and stability.
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Research Article|
September 12 2008
Regulation of Nedd4-2 self-ubiquitination and stability by a PY motif located within its HECT-domain
M. Christine Bruce
;
M. Christine Bruce
*Programs in Cell and Structure Biology and Biochemistry, The Hospital for Sick Children, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
†Department of Biochemistry, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
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Voula Kanelis
;
Voula Kanelis
*Programs in Cell and Structure Biology and Biochemistry, The Hospital for Sick Children, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
†Department of Biochemistry, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
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Fatemeh Fouladkou
;
Fatemeh Fouladkou
*Programs in Cell and Structure Biology and Biochemistry, The Hospital for Sick Children, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
†Department of Biochemistry, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
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Anne Debonneville
;
Anne Debonneville
‡Pharmacology Department, University of Lausanne, Rue du Bugnon 27, CH-1005, Lausanne, Switzerland
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Olivier Staub
;
Olivier Staub
‡Pharmacology Department, University of Lausanne, Rue du Bugnon 27, CH-1005, Lausanne, Switzerland
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Daniela Rotin
Daniela Rotin
1
*Programs in Cell and Structure Biology and Biochemistry, The Hospital for Sick Children, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
†Department of Biochemistry, University of Toronto, 101 College Street, Toronto, ON, Canada, M5G 1L7
1To whom correspondence should be addressed (email drotin@sickkids.ca).
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Biochem J (2008) 415 (1): 155–163.
Article history
Received:
December 19 2007
Revision Received:
May 12 2008
Accepted:
May 22 2008
Accepted Manuscript online:
May 22 2008
Citation
M. Christine Bruce, Voula Kanelis, Fatemeh Fouladkou, Anne Debonneville, Olivier Staub, Daniela Rotin; Regulation of Nedd4-2 self-ubiquitination and stability by a PY motif located within its HECT-domain. Biochem J 1 October 2008; 415 (1): 155–163. doi: https://doi.org/10.1042/BJ20071708
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