Abstract
Wnts are secreted, lipidated proteins that regulate multiple aspects of brain development, including dopaminergic neuron development. In this study, we perform the first purification and signaling analysis of Wnt2 and define the function of Wnt2 in ventral midbrain precursor cultures, as well as in Wnt2-null mice in vivo.Wefound that purified Wnt2 induces the phosphorylation of both Lrp5/6 and Dvl-2/3, and activates β-catenin in SN4741 dopaminergic cells. Moreover, purified Wnt2 increases progenitor proliferation, and the number of dopaminergic neurons in ventral midbrain precursor cultures. In agreement with these findings, analysis of the ventral midbrain of developing Wnt2-null mice revealed a decrease in progenitor proliferation and neurogenesis that lead to a decrease in the number of postmitotic precursors and dopaminergic neurons. Collectively, our observations identify Wnt2 as a novel regulator of dopaminergic progenitors and dopaminergic neuron development. © 2010 by The American Society for Biochemistry and Molecular Biology, Inc.
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CITATION STYLE
Sousa, K. M., Carlos Villaescusa, J., Cajanek, L., Ondr, J. K., Castelo-Branco, G., Hofstra, W., … Arenas, E. (2010). Wnt2 regulates progenitor proliferation in the developing ventral midbrain. Journal of Biological Chemistry, 285(10), 7246–7253. https://doi.org/10.1074/jbc.M109.079822
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