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  4. Glycosphingolipid metabolic reprogramming drives neural differentiation
 
research article

Glycosphingolipid metabolic reprogramming drives neural differentiation

Russo, Domenico
•
Della Ragione, Floriana
•
Rizzo, Riccardo
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April 3, 2018
The EMBO Journal

Neural development is accomplished by differentiation events leading to metabolic reprogramming. Glycosphingolipid metabolism is reprogrammed during neural development with a switch from globo- to ganglio-series glycosphingolipid production. Failure to execute this glycosphingolipid switch leads to neurodevelopmental disorders in humans, indicating that glycosphingolipids are key players in this process. Nevertheless, both the molecular mechanisms that control the glycosphingolipid switch and its function in neurodevelopment are poorly understood. Here, we describe a self-contained circuit that controls glycosphingolipid reprogramming and neural differentiation. We find that globo-series glycosphingolipids repress the epigenetic regulator of neuronal gene expression AUTS2. AUTS2 in turn binds and activates the promoter of the first and rate-limiting ganglioside-producing enzyme GM3 synthase, thus fostering the synthesis of gangliosides. By this mechanism, the globo-AUTS2 axis controls glycosphingolipid reprogramming and neural gene expression during neural differentiation, which involves this circuit in neurodevelopment and its defects in neuropathology.

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Type
research article
DOI
10.15252/embj.201797674
Author(s)
Russo, Domenico
Della Ragione, Floriana
Rizzo, Riccardo
Sugiyama, Eiji
Scalabrì, Francesco
Hori, Kei
Capasso, Serena
Sticco, Lucia
Fioriniello, Salvatore
De Gregorio, Roberto
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Date Issued

2018-04-03

Published in
The EMBO Journal
Volume

37

Issue

7

Article Number

e97674

Subjects

AUTS2

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bistability

•

epigenetics

•

glycosphingolipids

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neural differentiation

Editorial or Peer reviewed

REVIEWED

Written at

OTHER

EPFL units
UPDANGELO  
Available on Infoscience
April 16, 2019
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/156040
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