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Combating neurodegenerative disease with chemical probes and model systems.

Priyanka NarayanSepehr EhsaniSusan Lindquist
Published in: Nature chemical biology (2014)
The disheartening results of recent clinical trials for neurodegenerative disease (ND) therapeutics underscore the need for a more comprehensive understanding of the underlying disease biology before effective therapies can be devised. One hallmark of many NDs is a disruption in protein homeostasis. Therefore, investigating the role of protein homeostasis in these diseases is central to delineating their underlying pathobiology. Here, we review the seminal role that chemical biology has played in furthering the research on and treatment of dysfunctional protein homeostasis in NDs. We also discuss the vital and predictive role of model systems in identifying conserved homeostasis pathways and genes therein that are altered in neurodegeneration. Integrating approaches from chemical biology with the use of model systems yields a powerful toolkit with which to unravel the complexities of ND biology.
Keyphrases
  • clinical trial
  • protein protein
  • small molecule
  • amino acid
  • transcription factor
  • binding protein
  • randomized controlled trial
  • gene expression
  • genome wide
  • smoking cessation
  • genome wide analysis