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首页> 外文期刊>Cell death & disease. >DAP5 increases axonal outgrowth of hippocampal neurons by enhancing the cap-independent translation of DSCR1.4 mRNA
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DAP5 increases axonal outgrowth of hippocampal neurons by enhancing the cap-independent translation of DSCR1.4 mRNA

机译:DAP5通过增强DSCR1.4 mRNA的不依赖于帽的翻译来增加海马神经元的轴突生长

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摘要

Proper wiring between neurons is indispensable for proper brain function. From the early developmental stage, axons grow and navigate to connect to targets according to specific guidance cues. The accuracy of axonal outgrowth and navigation are controlled by a variety of genes, and mutations and/or deficiencies in these genes are closely related to several brain disorders, such as autism. DSCR1 is one of these genes and regulates actin filament formation in axons. Thus, identifying the detailed regulatory mechanisms of DSCR1 expression is crucial for the understanding of the axon development of neurons; however, these regulatory mechanisms of DSCR1 remain unknown. Here, we discovered that mRNA encoding the DSCR1 isoform DSCR1.4 is present and mainly translated by the cap-independent initiation mechanisms in both the soma and axons of hippocampal neurons. We found that translation of DSCR1.4 mRNA is enhanced by death-associated protein 5 (DAP5), which can bind to DSCR1.4 5′UTR. BDNF-stimulus induced an increase in DAP5 expression and the cap-independent translation efficiency of DSCR1.4 mRNA in axon as well as soma. Furthermore, we showed the importance of the cap-independent translation of DSCR1.4 on enhancement of DSCR1.4 expression by BDNF-stimulus and axonal outgrowth of hippocampal neurons. Our findings suggest a new translational regulatory mechanism for DSCR1.4 expressions and a novel function of DAP5 as a positive regulator of DSCR1.4 mRNA translation induced in soma and axon of hippocampal neurons.
机译:神经元之间正确的接线对于大脑的正常功能必不可少。从早期发育阶段开始,轴突会根据特定的指导线索生长并导航以连接到目标。轴突生长和导航的准确性受多种基因控制,这些基因的突变和/或缺陷与多种脑部疾病(例如自闭症)密切相关。 DSCR1是这些基因之一,并调节轴突中肌动蛋白丝的形成。因此,确定DSCR1表达的详细调节机制对于理解神经元轴突的发育至关重要。但是,DSCR1的这些调节机制仍然未知。在这里,我们发现海马神经元的体细胞和轴突中存在编码DSCR1亚型DSCR1.4的mRNA,并且主要通过不依赖帽的起始机制进行翻译。我们发现死亡相关蛋白5(DAP5)增强了DSCR1.4 mRNA的翻译,该蛋白可以与DSCR1.4 5'UTR结合。 BDNF刺激诱导轴突以及体中DAP5表达的增加和DSCR1.4 mRNA的不依赖于帽的翻译效率。此外,我们显示了DSCR1.4的不依赖于帽的翻译对通过BDNF刺激和海马神经元轴突生长增强DSCR1.4表达的重要性。我们的发现表明DSCR1.4表达的新的翻译调节机制和DAP5作为海马神经元的体细胞和轴突中诱导的DSCR1.4 mRNA翻译的正向调节器的新功能。

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