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The tumor suppressor Pml regulates cell fate in the developing neocortex

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posted on 2009-11-30, 15:37 authored by Tarik Regad, Cristian Bellodi, Pierluigi Nicotera, Paolo Salomoni
The control of cell fate in neural progenitor cells is critical for nervous system development. Nevertheless, the processes involved are only partially known. We found that the expression of the tumor suppressor Pml was restricted to neural progenitor cells (NPCs) in the developing neocortex of the mouse. Notably, in Pml-/- cortices, the overall number of proliferating NPCs was increased and transition between the two major progenitor types, radial glial cells and basal progenitors, was impaired. This in turn resulted in reduced differentiation and an overall decrease in the thickness of the cortex wall. In NPCs, Pml regulated the subcellular distribution of the retinoblastoma protein (pRb) and the protein phosphatase 1, triggering pRb dephosphorylation. Together, these findings reveal an unexpected role of Pml in controlling the function of NPCs in the CNS.

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Citation

Nature Neuroscience, 2009, 12 (2), pp. 132-140.

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Nature Neuroscience

Publisher

Nature Publishing Group

issn

1097-6256

Copyright date

2009

Available date

2009-11-30

Publisher version

http://www.nature.com/neuro/journal/v12/n2/full/nn.2251.html

Language

en

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