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Generation of motor neurons requires spatiotemporal coordination between retinoic acid and Mib-mediated Notch signaling
Authors:Hee Jeong Kong  Jae-Ho Ryu  Julan Kim  Ju-Won Kim  Bomi Seong  Ilson Whang
Affiliation:1. Biotechnology Research Division, National Institute of Fisheries Science, Busan, Korea;2. Department of Chemical and Biological Engineering, Hanbat National University, Daejeon, Korea;3. Department of Genetic Resources Research, National Marine Biodiversity Institute of Korea (MABIK), Seochun, Korea
Abstract:
Mind bomb (Mib) is an E3 ubiquitin ligase that activates the Notch signaling pathway. A previous study demonstrated that the generation of late-born GABAergic neurons may be regulated by the interplay between Mib and retinoic acid (RA). However, the relationship between Mib function and the retinoid pathway during the generation of late-born motor neurons remains unclear. We investigated the differentiation of neural progenitors into motor neurons by inhibition of Notch signaling and administration of RA to Tg[hsp70-Mib:EGFP] embryos. The number of motor neurons in the ventral spinal cord increased or decreased depending on the temporal inhibition of Mib-mediated Notch signaling. Inhibition of the retinoid pathway by citral treatment had a synergistic effect with overexpression of Mib:EGFP on the generation of ectopic motor neurons. Additionally, the proteolytic fragment of Mib was detected in differentiated P19 cells following treatment with RA. Our observations imply that the function of Mib may be attenuated by the retinoid pathway, and that Mib-mediated Notch signaling and the retinoid pathway play critical roles in the spatiotemporal differentiation of motor neurons.
Keywords:Zebrafish  Notch  retinoic acid  motor neuron  mind bomb
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