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Exposure of bipartite hydrophobic signal triggers nuclear quality control of Ndc10 at the endoplasmic reticulum/nuclear envelope

Authors :
Tommer Ravid
Nurit Kleinberger Doron
Ayala Shiber
Assaf Friedler
Omri S. Alfassy
Noa Furth
Itamar Cohen
Masha M. Rosenberg
Or Gertman
Furth, Noa
Gertman, Or
Shiber, Ayala
Alfassy, Omri S
Cohen, Itamar
Rosenberg, Masha M
Doron, Nurit Kleinberger
Friedler, Assaf
Ravid, Tommer
Source :
Molecular Biology of the Cell
Publication Year :
2011
Publisher :
American Society for Cell Biology (ASCB), 2011.

Abstract

Degradation of mutant Ndc10 is mediated by the E3 ligase Doa10 at the endoplasmic reticulum/nuclear envelope membrane. An autonomous degradation motif was localized to the C-terminal region of Ndc10. The motif is composed of two indispensable elements: a hydrophobic surface of an amphipathic helix and a loosely structured, hydrophobic C-terminal tail.<br />Proper functioning of the protein-folding quality control network depends on the network's ability to discern diverse structural perturbations to the native states of its protein substrates. Despite the centrality of the detection of misfolded states to cell home­ostasis, very little is known about the exact sequence and structural features that mark a protein as being misfolded. To investigate these features, we studied the requirements for the degradation of the yeast kinetochore protein Ndc10p. Mutant Ndc10p is a substrate of a protein-folding quality control pathway mediated by the E3 ubiquitin (Ub) ligase Doa10p at the endoplasmic reticulum (ER)/nuclear envelope membrane. Analysis of Ndc10p mutant derivatives, employing a reverse genetics approach, identified an autonomous quality control–associated degradation motif near the C-terminus of the protein. This motif is composed of two indispensable hydrophobic elements: a hydrophobic surface of an amphipathic helix and a loosely structured hydrophobic C-terminal tail. Site-specific point mutations expose these elements, triggering ubiquitin-mediated and HSP70 chaperone–dependent degradation of Ndc10p. These findings substantiate the ability of the ER quality control system to recognize subtle perturbation(s) in the native structure of a nuclear protein.

Details

ISSN :
19394586 and 10591524
Volume :
22
Database :
OpenAIRE
Journal :
Molecular Biology of the Cell
Accession number :
edsair.doi.dedup.....a48c28c4169b05e2afb7d71507db5036
Full Text :
https://doi.org/10.1091/mbc.e11-05-0463