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  • Hairy/Enhancer-of-Split MEGANE and Proneural MASH1 Factors Cooperate Synergistically in Midbrain GABAergic Neurogenesis.

Hairy/Enhancer-of-Split MEGANE and Proneural MASH1 Factors Cooperate Synergistically in Midbrain GABAergic Neurogenesis.

PloS one (2015-05-21)
Clara-Zoe Wende, Saida Zoubaa, Alexandra Blak, Diego Echevarria, Salvador Martinez, François Guillemot, Wolfgang Wurst, Jordi Guimera
要旨

GABAergic neurons are the primary inhibitory cell type in the mature brain and their dysfunction is associated with important neurological conditions like schizophrenia and anxiety. We aimed to discover the underlying mechanisms for dorsal/ventral midbrain GABAergic neurogenesis. Previous work by us and others has provided crucial insights into the key function of Mgn and Mash1 genes in determining GABAergic neurotransmitter fate. Induction of dorsal midbrain GABAergic neurons does not take place at any time during development in either of the single mutant mice. However, GABAergic neurons in the ventral midbrain remained unchanged. Thus, the similarities in MB-GABAergic phenotype observed in the Mgn and Mash1 single mutants suggest the existence of other factors that take over the function of MGN and MASH1 in the ventral midbrain or the existence of different molecular mechanisms. We show that this process essentially depends on heterodimers and homodimers formed by MGN and MASH1 and deciphered the in vivo relevance of the interaction by phenotypic analysis of Mgn/Mash1 double knockout and compound mice. Furthermore, the combination of gain- and loss-of-function experiments in the developing midbrain showed co-operative roles for Mgn and Mash1 genes in determining GABAergic identity. Transcription factors belonging to the Enhancer-of-split-related and proneural families have long been believed to counterpart each other's function. This work uncovers a synergistic cooperation between these two families, and provides a novel paradigm for how these two families cooperate for the acquisition of MB-GABAergic neuronal identity. Understanding their molecular mechanisms is essential for cell therapy strategies to amend GABAergic deficits.

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Sigma-Aldrich
モノクローナル抗FLAG® M2抗体 マウス宿主抗体, 1 mg/mL, clone M2, affinity isolated antibody, buffered aqueous solution (50% glycerol, 10 mM sodium phosphate, and 150 mM NaCl, pH 7.4)
Sigma-Aldrich
抗チロシンヒドロキシラーゼ抗体, Chemicon®, from rabbit
Sigma-Aldrich
抗NeuN抗体、クローンA60, clone A60, Chemicon®, from mouse
Sigma-Aldrich
抗GABA ウサギ宿主抗体, affinity isolated antibody, buffered aqueous solution
Sigma-Aldrich
抗ホスホヒストンH3 (Ser10)抗体、有糸分裂マーカー, Upstate®, from rabbit
Millipore
プロテイン G免疫沈降キット, sufficient for 50 assays