MYC proteins promote neuronal differentiation by controlling the mode of progenitor cell division
نویسندگان
چکیده
The role of MYC proteins in somatic stem and progenitor cells during development is poorly understood. We have taken advantage of a chick in vivo model to examine their role in progenitor cells of the developing neural tube. Our results show that depletion of endogenous MYC in radial glial precursors (RGPs) is incompatible with differentiation and conversely, that overexpression of MYC induces neurogenesis independently of premature or upregulated expression of proneural gene programs. Unexpectedly, the neurogenic function of MYC depends on the integrity of the polarized neural tissue, in contrast to the situation in dissociated RGPs where MYC is mitogenic. Within the polarized RGPs of the neural tube, MYC drives differentiation by inhibiting Notch signaling and by increasing neurogenic cell division, eventually resulting in a depletion of progenitor cells. These results reveal an unexpected role of MYC in the control of stemness versus differentiation of neural stem cells in vivo.
منابع مشابه
Myc and differentiation: going against the current.
T he correct balance between selfrenewal and expansion of stem cells versus differentiation is essential to maintain tissue homeostasis and prevent neoplastic transformation. The MYC protooncogene family (comprising MYC, MYCN and MYCL) is a family of proteins that plays a crucial role in the decision of stem and progenitor cells to expand or undergo differentiation. MYC proteins are transcripti...
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