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Articles, Neurobiology of Disease

Loss of PINK1 Attenuates HIF-1α Induction by Preventing 4E-BP1-Dependent Switch in Protein Translation under Hypoxia

William Lin, Natasha L. Wadlington, Linan Chen, Xiaoxi Zhuang, James R. Brorson and Un Jung Kang
Journal of Neuroscience 19 February 2014, 34 (8) 3079-3089; DOI: https://doi.org/10.1523/JNEUROSCI.2286-13.2014
William Lin
1Department of Neurology,
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Natasha L. Wadlington
2Committee on Neurobiology, and
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Linan Chen
3Department of Neurobiology, The University of Chicago, Chicago, Illinois 60637
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Xiaoxi Zhuang
2Committee on Neurobiology, and
3Department of Neurobiology, The University of Chicago, Chicago, Illinois 60637
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James R. Brorson
1Department of Neurology,
2Committee on Neurobiology, and
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Un Jung Kang
1Department of Neurology,
2Committee on Neurobiology, and
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Abstract

Parkinson's disease (PD) has multiple proposed etiologies with implication of abnormalities in cellular homeostasis ranging from proteostasis to mitochondrial dynamics to energy metabolism. PINK1 mutations are associated with familial PD and here we discover a novel PINK1 mechanism in cellular stress response. Using hypoxia as a physiological trigger of oxidative stress and disruption in energy metabolism, we demonstrate that PINK1−/− mouse cells exhibited significantly reduced induction of HIF-1α protein, HIF-1α transcriptional activity, and hypoxia-responsive gene upregulation. Loss of PINK1 impairs both hypoxia-induced 4E-BP1 dephosphorylation and increase in the ratio of internal ribosomal entry site (IRES)-dependent to cap-dependent translation. These data suggest that PINK1 mediates adaptive responses by activating IRES-dependent translation, and the impairments in translation and the HIF-1α pathway may contribute to PINK1-associated PD pathogenesis that manifests under cellular stress.

  • 4EBP
  • hypoxia
  • IRES
  • Parkinson's disease
  • PINK1
  • translation
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The Journal of Neuroscience: 34 (8)
Journal of Neuroscience
Vol. 34, Issue 8
19 Feb 2014
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Loss of PINK1 Attenuates HIF-1α Induction by Preventing 4E-BP1-Dependent Switch in Protein Translation under Hypoxia
William Lin, Natasha L. Wadlington, Linan Chen, Xiaoxi Zhuang, James R. Brorson, Un Jung Kang
Journal of Neuroscience 19 February 2014, 34 (8) 3079-3089; DOI: 10.1523/JNEUROSCI.2286-13.2014

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Loss of PINK1 Attenuates HIF-1α Induction by Preventing 4E-BP1-Dependent Switch in Protein Translation under Hypoxia
William Lin, Natasha L. Wadlington, Linan Chen, Xiaoxi Zhuang, James R. Brorson, Un Jung Kang
Journal of Neuroscience 19 February 2014, 34 (8) 3079-3089; DOI: 10.1523/JNEUROSCI.2286-13.2014
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Keywords

  • 4EBP
  • hypoxia
  • IRES
  • Parkinson's disease
  • PINK1
  • translation

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