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1. ARX regulates cortical intermediate progenitor cell expansion and upper layer neuron formation through repression of Cdkn1c.

2. Wnt signaling has opposing roles in the developing and the adult brain that are modulated by Hipk1.

3. Arx acts as a regional key selector gene in the ventral telencephalon mainly through its transcriptional repression activity.

4. Arx is a direct target of Dlx2 and thereby contributes to the tangential migration of GABAergic interneurons.

5. The homeobox gene Arx is a novel positive regulator of embryonic myogenesis.

6. Inactivation of Arx, the murine ortholog of the X-linked lissencephaly with ambiguous genitalia gene, leads to severe disorganization of the ventral telencephalon with impaired neuronal migration and differentiation.

7. Aristaless-related homeobox gene, the gene responsible for West syndrome and related disorders, is a Groucho/transducin-like enhancer of split dependent transcriptional repressor.

8. The simultaneous loss of Arx and Pax4 genes promotes a somatostatin-producing cell fate specification at the expense of the alpha- and beta-cell lineages in the mouse endocrine pancreas.

9. The vertebrate ortholog of Aristaless is regulated by Dlx genes in the developing forebrain.

10. Mouse orthologue of ARX, a gene mutated in several X-linked forms of mental retardation and epilepsy, is a marker of adult neural stem cells and forebrain GABAergic neurons.

11. Bsx, an evolutionary conserved Brain Specific homeoboX gene expressed in the septum, epiphysis, mammillary bodies and arcuate nucleus.

12. Dmbx1 is a paired-box containing gene specifically expressed in the caudal most brain structures.

13. Emx2 regulates the proliferation of stem cells of the adult mammalian central nervous system.

14. Vax2 inactivation in mouse determines alteration of the eye dorsal-ventral axis, misrouting of the optic fibres and eye coloboma.

15. Otx genes in brain morphogenesis.

16. Barhl1, a gene belonging to a new subfamily of mammalian homeobox genes, is expressed in migrating neurons of the CNS.

17. Evolution of Emx genes and brain development in vertebrates.

18. Wnt signaling has opposing roles in the developing and the adult brain that are modulated by Hipk1

19. Barhl1, a gene belonging to a new subfamily of mammalian homeobox genes, is expressed in migrating neurons of the CNS

20. Emx2 regulates the proliferation of stem cells of the adult mammalian central nervous system

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