Proteomics

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Deubiquitinase activity is required for the degradation of misfolded cytosolic proteins upon heat-stress


ABSTRACT: Elimination of misfolded proteins is crucial for proteostasis and to prevent proteinopathies. Nedd4/Rsp5 emerged as a major E3 ligase involved in multiple quality control pathways that target misfolded plasma membrane proteins, aggregated polypeptides, and cytosolic heat-induced misfolded proteins for degradation. It remained unclear how in one case cytosolic heat-induced Rsp5 substrates are destined for proteasomal degradation, whereas other Rsp5 quality control substrates are otherwise directed to lysosomal degradation. Here we find that Ubp2 and Ubp3 deubiquitinases are required for the proteasomal degradation of cytosolic misfolded proteins targeted by Rsp5 after heat-shock. The two deubiquitinases associate more with Rsp5 upon heat stress to prevent the assembly of K63-linked ubiquitin on Rsp5 heat-induced substrates. This activity was required to promote the K48-mediated proteasomal degradation of Rsp5 heat-shock induced substrates. Our results indicate that ubiquitin chain editing is key to the cytosolic protein quality control under stress conditions.

INSTRUMENT(S): LTQ Orbitrap Velos, 6460 Triple Quadrupole LC/MS

ORGANISM(S): Saccharomyces Cerevisiae (baker's Yeast)

TISSUE(S): Haploid Cell

DISEASE(S): Disease Free

SUBMITTER: Neng Fang  

LAB HEAD: Thibault Mayor

PROVIDER: PXD004747 | Pride | 2022-03-01

REPOSITORIES: Pride

Dataset's files

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Action DRS
Cdc19_AQUA.d.zip Other
Cdc19_AQUA.mzdata.xml Xml
Cdc19_ubp2_AQUA.d.zip Other
Cdc19_ubp2_AQUA.mzdata.xml Xml
Figure3e.raw Raw
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Publications

Deubiquitinase activity is required for the proteasomal degradation of misfolded cytosolic proteins upon heat-stress.

Fang Nancy N NN   Zhu Mang M   Rose Amalia A   Wu Kuen-Phon KP   Mayor Thibault T  

Nature communications 20161004


Elimination of misfolded proteins is crucial for proteostasis and to prevent proteinopathies. Nedd4/Rsp5 emerged as a major E3-ligase involved in multiple quality control pathways that target misfolded plasma membrane proteins, aggregated polypeptides and cytosolic heat-induced misfolded proteins for degradation. It remained unclear how in one case cytosolic heat-induced Rsp5 substrates are destined for proteasomal degradation, whereas other Rsp5 quality control substrates are otherwise directed  ...[more]

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