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A novel role of CPEB3 in regulating EGFR gene transcription via association with Stat5b in neurons

机译:CPEB3通过与Stat5b结合在神经元中调节EGFR基因转录的新作用

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CPEB3 is a sequence-specific RNA-binding protein and represses translation of its target mRNAs in neurons. Here, we have identified a novel function of CPEB3 as to interact with Stat5b and inhibit its transcription activity in the nucleus without disrupting dimerization, DNA binding and nuclear localization of Stat5b. Moreover, CPEB3 is a nucleocytoplasm-shuttling protein with predominant residence in the cytoplasm; whereas activation of NMDA receptors accumulates CPEB3 in the nucleus. Using the knockdown approach, we have found the receptor tyrosine kinase, EGFR, is a target gene transcriptionally activated by Stat5b and downregulated by CPEB3 in neurons. The increased EGFR expression in CPEB3 knockdown neurons, when stimulated with EGF, alters the kinetics of downstream signaling. Taken together, CPEB3 has a novel function in the nucleus as to suppress Stat5b-dependent EGFR gene transcription. Consequently, EGFR signaling is negatively regulated by CPEB3 in neurons.
机译:CPEB3是一种序列特异性RNA结合蛋白,可抑制神经元中其目标mRNA的翻译。在这里,我们已经确定了CPEB3与Stat5b相互作用并抑制其在细胞核中的转录活性而不会破坏Stat5b的二聚化,DNA结合和核定位的新功能。此外,CPEB3是一种在细胞质中占主要地位的细胞质穿梭蛋白。而NMDA受体的激活则在细胞核中积累CPEB3。使用敲低法,我们发现受体酪氨酸激酶EGFR是神经元中被Stat5b转录激活并被CPEB3下调的靶基因。当用EGF刺激时,CPEB3敲低神经元中EGFR表达的增加会改变下游信号传导的动力学。总之,CPEB3在细胞核中具有抑制Stat5b依赖性EGFR基因转录的新功能。因此,EGFR信号在神经元中受CPEB3负调节。

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