International Journal of Molecular Sciences (May 2018)

mTOR Signaling and Neural Stem Cells: The Tuberous Sclerosis Complex Model

  • Alice Polchi,
  • Alessandro Magini,
  • Danila Di Meo,
  • Brunella Tancini,
  • Carla Emiliani

DOI
https://doi.org/10.3390/ijms19051474
Journal volume & issue
Vol. 19, no. 5
p. 1474

Abstract

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The mechanistic target of rapamycin (mTOR), a serine-threonine kinase, plays a pivotal role in regulating cell growth and proliferation. Notably, a great deal of evidence indicates that mTOR signaling is also crucial in controlling proliferation and differentiation of several stem cell compartments. Consequently, dysregulation of the mTOR pathway is often associated with a variety of disease, such as cancer and metabolic and genetic disorders. For instance, hyperactivation of mTORC1 in neural stem cells (NSCs) is associated with the insurgence of neurological manifestation characterizing tuberous sclerosis complex (TSC). In this review, we survey the recent contributions of TSC physiopathology studies to understand the role of mTOR signaling in both neurogenesis and tumorigenesis and discuss how these new insights can contribute to developing new therapeutic strategies for neurological diseases and cancer.

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