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PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis.

Publication ,  Journal Article
Dickey, AS; Sanchez, DN; Arreola, M; Sampat, KR; Fan, W; Arbez, N; Akimov, S; Van Kanegan, MJ; Ohnishi, K; Gilmore-Hall, SK; Flores, AL ...
Published in: Sci Transl Med
December 6, 2017

Neurons must maintain protein and mitochondrial quality control for optimal function, an energetically expensive process. The peroxisome proliferator-activated receptors (PPARs) are ligand-activated transcription factors that promote mitochondrial biogenesis and oxidative metabolism. We recently determined that transcriptional dysregulation of PPARδ contributes to Huntington's disease (HD), a progressive neurodegenerative disorder resulting from a CAG-polyglutamine repeat expansion in the huntingtin gene. We documented that the PPARδ agonist KD3010 is an effective therapy for HD in a mouse model. PPARδ forms a heterodimer with the retinoid X receptor (RXR), and RXR agonists are capable of promoting PPARδ activation. One compound with potent RXR agonist activity is the U.S. Food and Drug Administration-approved drug bexarotene. We tested the therapeutic potential of bexarotene in HD and found that bexarotene was neuroprotective in cellular models of HD, including medium spiny-like neurons generated from induced pluripotent stem cells (iPSCs) derived from patients with HD. To evaluate bexarotene as a treatment for HD, we treated the N171-82Q mouse model with the drug and found that bexarotene improved motor function, reduced neurodegeneration, and increased survival. To determine the basis for PPARδ neuroprotection, we evaluated metabolic function and noted markedly impaired oxidative metabolism in HD neurons, which was rescued by bexarotene or KD3010. We examined mitochondrial and protein quality control in cellular models of HD and observed that treatment with a PPARδ agonist promoted cellular quality control. By boosting cellular activities that are dysfunctional in HD, PPARδ activation may have therapeutic applications in HD and potentially other neurodegenerative diseases.

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Published In

Sci Transl Med

DOI

EISSN

1946-6242

Publication Date

December 6, 2017

Volume

9

Issue

419

Location

United States

Related Subject Headings

  • Tetrahydronaphthalenes
  • Signal Transduction
  • Reverse Transcriptase Polymerase Chain Reaction
  • Rats, Sprague-Dawley
  • Rats
  • PPAR delta
  • Neurons
  • Muscle, Skeletal
  • Mice
  • Huntington Disease
 

Citation

APA
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Dickey, A. S., Sanchez, D. N., Arreola, M., Sampat, K. R., Fan, W., Arbez, N., … La Spada, A. R. (2017). PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis. Sci Transl Med, 9(419). https://doi.org/10.1126/scitranslmed.aal2332
Dickey, Audrey S., Dafne N. Sanchez, Martin Arreola, Kunal R. Sampat, Weiwei Fan, Nicolas Arbez, Sergey Akimov, et al. “PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis.Sci Transl Med 9, no. 419 (December 6, 2017). https://doi.org/10.1126/scitranslmed.aal2332.
Dickey AS, Sanchez DN, Arreola M, Sampat KR, Fan W, Arbez N, et al. PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis. Sci Transl Med. 2017 Dec 6;9(419).
Dickey, Audrey S., et al. “PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis.Sci Transl Med, vol. 9, no. 419, Dec. 2017. Pubmed, doi:10.1126/scitranslmed.aal2332.
Dickey AS, Sanchez DN, Arreola M, Sampat KR, Fan W, Arbez N, Akimov S, Van Kanegan MJ, Ohnishi K, Gilmore-Hall SK, Flores AL, Nguyen JM, Lomas N, Hsu CL, Lo DC, Ross CA, Masliah E, Evans RM, La Spada AR. PPARδ activation by bexarotene promotes neuroprotection by restoring bioenergetic and quality control homeostasis. Sci Transl Med. 2017 Dec 6;9(419).

Published In

Sci Transl Med

DOI

EISSN

1946-6242

Publication Date

December 6, 2017

Volume

9

Issue

419

Location

United States

Related Subject Headings

  • Tetrahydronaphthalenes
  • Signal Transduction
  • Reverse Transcriptase Polymerase Chain Reaction
  • Rats, Sprague-Dawley
  • Rats
  • PPAR delta
  • Neurons
  • Muscle, Skeletal
  • Mice
  • Huntington Disease