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Publication : Maturation-promoting activity of SATB1 in MGE-derived cortical interneurons.

First Author  Denaxa M Year  2012
Journal  Cell Rep Volume  2
Issue  5 Pages  1351-62
PubMed ID  23142661 Mgi Jnum  J:196342
Mgi Id  MGI:5487747 Doi  10.1016/j.celrep.2012.10.003
Citation  Denaxa M, et al. (2012) Maturation-promoting activity of SATB1 in MGE-derived cortical interneurons. Cell Rep 2(5):1351-62
abstractText  The generation of cortical interneuron subtypes is controlled by genetic programs that are activated in the ventral forebrain and unfold during the prolonged period of inhibitory neuron development. The LIM-homeodomain protein LHX6 is critical for the development of all cortical interneurons originating in the medial ganglionic eminence, but the molecular mechanisms that operate downstream of LHX6 to control the terminal differentiation of somatostatin- and parvalbumin-expressing interneurons within the cortex remain unknown. Here, we provide evidence that the nuclear matrix and genome organizer protein SATB1 is induced by neuronal activity and functions downstream of Lhx6 to control the transition of tangentially migrating immature interneurons into the terminally differentiated Somatostatin (SST)-expressing subtype. Our experiments provide a molecular framework for understanding the genetic and epigenetic mechanisms by which specified but immature cortical interneurons acquire the subtype-defining molecular and morphophysiological characteristics that allow them to integrate and function within cortical circuits.
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