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PMID: 22056141 Published · ppublish English

Sustained activation of mTOR pathway in embryonic neural stem cells leads to development of tuberous sclerosis complex-associated lesions.

Cell stem cell ·Vol. 9 ·No. 5 ·2012-04-09

Magri Laura, Cambiaghi Marco, Cominelli Manuela, Alfaro-Cervello Clara, Cursi Marco, Pala Mauro, Bulfone Alessandro, Garcìa-Verdugo Jose Manuel, Leocani Letizia, Minicucci Fabio, Poliani Pietro Luigi, Galli Rossella

Abstract

Tuberous Sclerosis Complex (TSC) is a multisystem genetic disorder characterized by hamartomatous neurological lesions that exhibit abnormal cell proliferation and differentiation. Hyperactivation of mTOR pathway by mutations in either the Tsc1 or Tsc2 gene underlies TSC pathogenesis, but involvement of specific neural cell populations in the formation of TSC-associated neurological lesions remains unclear. We deleted Tsc1 in Emx1-expressing embryonic telencephalic neural stem cells (NSCs) and found that mutant mice faithfully recapitulated TSC neuropathological lesions, such as cortical lamination defects and subependymal nodules (SENs). These alterations were caused by enhanced generation of SVZ neural progeny, followed by their premature differentiation and impaired maturation during both embryonic and postnatal development. Notably, mTORC1-dependent Akt inhibition and STAT3 activation were involved in the reduced self-renewal and earlier neuronal and astroglial differentiation of mutant NSCs. Thus, finely tuned mTOR activation in embryonic NSCs may be critical to prevent development of TSC-associated brain lesions.

Article Info
Journal
Cell stem cell
Abbr.
Cell Stem Cell
Published
2012-04-09
Indexed
2011-11-07
Updated
2016-05-18
Language
English
Country/Region
United States
NLM ID
101311472
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