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Quantitative proteomics identifies proteins that resist translational repression and become dysregulated in ALS-FUS.
Baron, Desiree M; Matheny, Tyler; Lin, Yen-Chen; Leszyk, John D; Kenna, Kevin; Gall, Katherine V; Santos, David P; Tischbein, Maeve; Funes, Salome; Hayward, Lawrence J; Kiskinis, Evangelos; Landers, John E; Parker, Roy; Shaffer, Scott A; Bosco, Daryl A.
Affiliation
  • Baron DM; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Matheny T; Department of Chemistry and Biochemistry, University of Colorado, Boulder, CO, USA.
  • Lin YC; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Leszyk JD; Department of Biochemistry and Molecular Pharmacology, Worcester, MA, USA.
  • Kenna K; Mass Spectrometry Facility, University of Massachusetts Medical School, Shrewsbury, MA, USA.
  • Gall KV; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Santos DP; Department of Neurology, Brain Center Rudolf Magnus, University Medical Center Utrecht, University of Utrecht, Utrecht, The Netherlands.
  • Tischbein M; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Funes S; The Ken & Ruth Davee Department of Neurology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Hayward LJ; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Kiskinis E; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Landers JE; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Parker R; Department of Neurology, University of Massachusetts Medical School, Worcester, MA, USA.
  • Shaffer SA; The Ken & Ruth Davee Department of Neurology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
  • Bosco DA; Department of Physiology, Northwestern University Feinberg School of Medicine, Chicago, IL, USA.
Hum Mol Genet ; 28(13): 2143-2160, 2019 07 01.
Article in En | MEDLINE | ID: mdl-30806671
ABSTRACT
Aberrant translational repression is a feature of multiple neurodegenerative diseases. The association between disease-linked proteins and stress granules further implicates impaired stress responses in neurodegeneration. However, our knowledge of the proteins that evade translational repression is incomplete. It is also unclear whether disease-linked proteins influence the proteome under conditions of translational repression. To address these questions, a quantitative proteomics approach was used to identify proteins that evade stress-induced translational repression in arsenite-treated cells expressing either wild-type or amyotrophic lateral sclerosis (ALS)-linked mutant FUS. This study revealed hundreds of proteins that are actively synthesized during stress-induced translational repression, irrespective of FUS genotype. In addition to proteins involved in RNA- and protein-processing, proteins associated with neurodegenerative diseases such as ALS were also actively synthesized during stress. Protein synthesis under stress was largely unperturbed by mutant FUS, although several proteins were found to be differentially expressed between mutant and control cells. One protein in particular, COPBI, was downregulated in mutant FUS-expressing cells under stress. COPBI is the beta subunit of the coat protein I (COPI), which is involved in Golgi to endoplasmic reticulum (ER) retrograde transport. Further investigation revealed reduced levels of other COPI subunit proteins and defects in COPBI-relatedprocesses in cells expressing mutant FUS. Even in the absence of stress, COPBI localization was altered in primary and human stem cell-derived neurons expressing ALS-linked FUS variants. Our results suggest that Golgi to ER retrograde transport may be important under conditions of stress and is perturbed upon the expression of disease-linked proteins such as FUS.
Subject(s)

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Protein Biosynthesis / RNA-Binding Protein FUS / Endoplasmic Reticulum / Golgi Apparatus / Amyotrophic Lateral Sclerosis / Motor Neurons Limits: Animals / Humans Language: En Journal: Hum Mol Genet Journal subject: BIOLOGIA MOLECULAR / GENETICA MEDICA Year: 2019 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Protein Biosynthesis / RNA-Binding Protein FUS / Endoplasmic Reticulum / Golgi Apparatus / Amyotrophic Lateral Sclerosis / Motor Neurons Limits: Animals / Humans Language: En Journal: Hum Mol Genet Journal subject: BIOLOGIA MOLECULAR / GENETICA MEDICA Year: 2019 Document type: Article Affiliation country:
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