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Disease-specific accumulation of mutant ubiquitin as a marker for proteasomal dysfunction in the brain

  • David F. Fischer
  • , Rob A. I. de Vos
  • , Renske van Dijk
  • , Femke M. S. de Vrij
  • , Evelien A. Proper
  • , Marc A. F. Sonnemans
  • , Marian C. Verhage
  • , Jacqueline A. Sluijs
  • , Barbara Hobo
  • , Mohamed Zouambia
  • , Ernst N. H. Jansen Steur
  • , Wouter Kamphorst
  • , Elly M. Hol
  • , Fred W. van Leeuwen
  • Amsterdam UMC - Vrije Universiteit Amsterdam
  • Medisch Spectrum Twente
  • Netherlands Institute for Neuroscience

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Molecular misreading of the ubiquitin-B (UBB) gene results in a dinucleotide deletion in UBB mRNA. The resulting mutant protein, UBB +1, accumulates in the neuropathological hallmarks of Alzheimer disease. In vitro, UBB+1 inhibits proteasomal proteolysis, although it is also an ubiquitin fusion degradation substrate for the proteasome. Using the ligase chain reaction to detect dinucleotide deletions, we report here that UBB+ 1 transcripts are present in each neurodegenerative disease studied (tauo- and synucleinopathies) and even in control brain samples. In contrast to UBB+1 transcripts, UBB+1 protein accumulation in the ubiquitin-containing neuropathological hallmarks is restricted to the tauopathies such as Pick disease, frontotemporal dementia, progressive supranuclear palsy, and argyrophilic grain disease. Remarkably, UBB +1 protein is not detected in the major forms of synucleinopathies (Lewy body disease and multiple system atrophy). The neurologically intact brain can cope with UBB+1 as lentivirally delivered UBB+1 protein is rapidly degraded in rat hippocampus, whereas the K29,48R mutant of UBB+1, which is not ubiquitinated, is abundantly expressed. The finding that UBB+1 protein only accumulates in tauopathies thus implies that the ubiquitin-proteasome system is impaired specifically in this group of neurodegenerative diseases and not in synucleinopathies and that the presence of UBB+1 protein reports proteasomal dysfunction in the brain.
Original languageEnglish
Pages (from-to)2014-2024
JournalFASEB journal
Volume17
Issue number14
DOIs
Publication statusPublished - Nov 2003
Externally publishedYes

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