Translational Regulation of NeuroD1 Expression by FMRP: Involvement in Glutamatergic Neuronal Differentiation of Cultured Rat Primary Neural Progenitor Cells

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作者
Se Jin Jeon
Ji-Woon Kim
Ki Chan Kim
So Min Han
Hyo Sang Go
Jung Eun Seo
Chang Soon Choi
Jong Hoon Ryu
Chan Young Shin
Mi-Ryoung Song
机构
[1] Konkuk University,School of Medicine and Neuroscience Research Center, Institute SMART
[2] Kyung Hee University,IABS
[3] Gwangju Institute of Science and Technology,Department of Oriental Pharmaceutical Science, College of Pharmacy
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关键词
FMRP; NeuroD1; Neural progenitor cell; Neuronal differentiation;
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摘要
Fragile X mental retardation protein (FMRP) is encoded by Fmr1 gene in which mutation is known to cause fragile X syndrome characterized by mental impairment and other psychiatric symptoms similar to autism spectrum disorders. FMRP plays important roles in cellular mRNA biology such as transport, stability, and translation as an RNA-binding protein. In the present study, we identified potential role of FMRP in the neural differentiation, using cortical neural progenitor cells from Sprague–Dawley rat. We newly found NeuroD1, an essential regulator of glutamatergic neuronal differentiation, as a new mRNA target interacting with FMRP in co-immunoprecipitation experiments. We also identified FMRP as a regulator of neuronal differentiation by modulating NeuroD1 expression. Down-regulation of FMRP by siRNA also increased NeuroD1 expression along with increased pre- and post-synaptic development of glutamatergic neuron, as evidenced by Western blot and immunocytochemistry. On the contrary, cells harboring FMRP over-expression construct showed decreased NeuroD1 expression. Treatment of cultured neural precursor cells with a histone deacetylase inhibitor, valproic acid known as an inducer of hyper-glutamatergic neuronal differentiation, down-regulated the expression of FMRP, and induced NeuroD1 expression. Our study suggests that modulation of FMRP expression regulates neuronal differentiation by interaction with its binding target mRNA, and provides an example of the gene and environmental interaction regulating glutamatergic neuronal differentiation.
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页码:297 / 305
页数:8
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