Proteomics

Dataset Information

0

A Multiple Hit Model for the Diverse Pathogenic Effects Specific to Huntingtin Aggregate Stage in Cells


ABSTRACT: Huntington's disease is a fatal neurodegenerative disorder characterized by the aggregation of polyglutamine-expanded huntingtin into oligomers and fibrils. How protein aggregation leads to cellular dysfunction is not well understood. To address this question, we combined in-cell single molecule fluorescence spectroscopy with quantitative proteomics to define how huntingtin engages in aberrant protein interactions during its progressive aggregation. We find that huntingtin interacts preferentially with key components of distinct cellular processes as aggregation proceeds from soluble oligomers to end-stage inclusions. The aberrant interactions of soluble oligomers are highly enriched on RNA-binding proteins and with proteins functioning in ribosome biogenesis, translation, transcription, and vesicle transport. A significant characteristic of these interactors is the presence of extended low-complexity sequence regions. Compared to the soluble aggregates, the interactome of insoluble inclusions is significantly less complex and is enriched in protein quality control components. Our results suggest a 'multiple hit' model for polyglutamine interactions in pathogenesis, with detrimental effects on cell function occurring in an aggregation stage-dependent manner.

INSTRUMENT(S): LTQ Orbitrap, Q Exactive

ORGANISM(S): Mus Musculus (mouse)

TISSUE(S): Electrically Active Cell

DISEASE(S): Huntington Disease

SUBMITTER: Mario Oroshi  

LAB HEAD: F. Ulrich Hartl

PROVIDER: PXD003446 | Pride | 2017-01-31

REPOSITORIES: Pride

altmetric image

Publications

Soluble Oligomers of PolyQ-Expanded Huntingtin Target a Multiplicity of Key Cellular Factors.

Kim Yujin E YE   Hosp Fabian F   Frottin Frédéric F   Ge Hui H   Mann Matthias M   Hayer-Hartl Manajit M   Hartl F Ulrich FU  

Molecular cell 20160825 6


Huntington's disease is one of several neurodegenerative disorders characterized by the aggregation of polyglutamine (polyQ)-expanded mutant protein. How polyQ aggregation leads to cellular dysfunction is not well understood. Here, we analyzed aberrant protein interactions of soluble oligomers and insoluble inclusions of mutant huntingtin using in-cell single molecule fluorescence spectroscopy and quantitative proteomics. We find that the interactome of soluble oligomers is highly complex, with  ...[more]

Similar Datasets

2017-11-24 | PXD004973 | Pride
2014-10-10 | E-GEOD-38218 | biostudies-arrayexpress
2014-10-10 | E-GEOD-38219 | biostudies-arrayexpress
2014-10-10 | GSE38219 | GEO
2014-10-10 | GSE38218 | GEO
2020-08-18 | PXD018505 | Pride
2017-05-04 | PXD005120 | Pride
2022-10-21 | PXD031337 | Pride
2020-08-18 | PXD018824 | Pride
2014-10-10 | GSE62210 | GEO