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  4. SIRT2 inhibition achieves neuroprotection by decreasing sterol biosynthesis
 
research article

SIRT2 inhibition achieves neuroprotection by decreasing sterol biosynthesis

Luthi-Carter, Ruth  
•
Taylor, David M.
•
Pallos, Judit
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2010
Proceedings Of The National Academy Of Sciences Of The United States Of America (PNAS)

Huntington's disease (HD), an incurable neurodegenerative disorder, has a complex pathogenesis including protein aggregation and the dysregulation of neuronal transcription and metabolism. Here, we demonstrate that inhibition of sirtuin 2 (SIRT2) achieves neuroprotection in cellular and invertebrate models of HD. Genetic or pharmacologic inhibition of SIRT2 in a striatal neuron model of HD resulted in gene expression changes including significant down-regulation of RNAs responsible for sterol biosynthesis. Whereas mutant huntingtin fragments increased sterols in neuronal cells, SIRT2 inhibition reduced sterol levels via decreased nuclear trafficking of SREBP-2. Importantly, manipulation of sterol biosynthesis at the transcriptional level mimicked SIRT2 inhibition, demonstrating that the metabolic effects of SIRT2 inhibition are sufficient to diminish mutant huntingtin toxicity. These data identify SIRT2 inhibition as a promising avenue for HD therapy and elucidate a unique mechanism of SIRT2-inhibitor-mediated neuroprotection. Furthermore, the ascertainment of SIRT2's role in regulating cellular metabolism demonstrates a central function shared with other sirtuin proteins.

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Type
research article
DOI
10.1073/pnas.1002924107
Web of Science ID

WOS:000277088700059

Author(s)
Luthi-Carter, Ruth  
Taylor, David M.
Pallos, Judit
Lambert, Emmanuel
Amore, Allison
Parker, Alex
Moffitt, Hilary
Smith, Donna L.
Runne, Heike
Gokce, Ozgun
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Date Issued

2010

Publisher

National Academy of Sciences

Published in
Proceedings Of The National Academy Of Sciences Of The United States Of America (PNAS)
Volume

107

Issue

17

Start page

7927

End page

32

Subjects

cholesterol

•

Huntington's disease

•

metabolism

•

sirtuin

•

transcription factor SREBP-2

•

Huntingtons-Disease

•

Cholesterol-Biosynthesis

•

Histone Deacetylase

•

Alzheimers-Disease

•

In-Vitro

•

Parkinsons-Disease

•

Mouse Model

•

Brain

•

Gene

•

Mice

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LNGF  
Available on Infoscience
November 22, 2010
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/58019
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