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    Please use this identifier to cite or link to this item: https://ir.csmu.edu.tw:8080/ir/handle/310902500/11000


    Title: Knockdown of cyclin-dependent kinase 10 (cdk10) gene impairs neural progenitor survival via modulation of raf1a gene expression.
    Authors: Yeh, CW
    Hsu, LS
    Cheng, YC
    Kao, SH
    Contributors: 中山醫學大學
    Keywords: Apoptosis;CDK (Cyclin-dependent Kinase);Development;Neurons;Zebrafish;cdk10
    Date: 2013
    Issue Date: 2015-07-02T09:35:25Z (UTC)
    ISSN: 0021-9258
    Abstract: In this study, we used zebrafish as an animal model to elucidate the developmental function of cdk10 in vertebrates. In situ hybridization analyses demonstrated that cdk10 is expressed throughout development with a relative enrichment in the brain in the late stages. Similar to its mammalian ortholog, cdk10 can interact with the transcription factor ETS2 and exhibit kinase activity by phosphorylating histone H1. Morpholino-based loss of cdk10 expression caused apoptosis in sox2-positive cells and decreased the expression of subsequent neuronal markers. Acetylated tubulin staining revealed a significant reduction in the number of Rohon-Beard sensory neurons in cdk10 morphants. This result is similar to that demonstrated by decreased islet2 expression in the dorsal regions. Moreover, cdk10 morphants exhibited a marked loss of huC-positive neurons in the telencephalon and throughout the spinal cord axis. The population of retinal ganglion cells was also diminished in cdk10 morphants. These phenotypes were rescued by co-injection of cdk10 mRNA. Interestingly, the knockdown of cdk10 significantly elevated raf1a mRNA expression. Meanwhile, an MEK inhibitor (U0126) recovered sox2 and ngn1 transcript levels in cdk10 morphants. Our findings provide the first functional characterization of cdk10 in vertebrate development and reveal its critical function in neurogenesis by modulation of raf1a expression.
    URI: https://ir.csmu.edu.tw:8080/ir/handle/310902500/11000
    http://dx.doi.org/10.1074/jbc.M112.420265
    Relation: J Biol Chem. 2013 Sep 27;288(39):27927-39.
    Appears in Collections:[生化微生物免疫研究所] 期刊論文

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