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首页> 外文期刊>Molecular biology of the cell >hnRNP-Q1 represses nascent axon growth in cortical neurons by inhibiting Gap-43 mRNA translation
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hnRNP-Q1 represses nascent axon growth in cortical neurons by inhibiting Gap-43 mRNA translation

机译:hnRNP-Q1通过抑制Gap-43 mRNA的表达抑制皮层神经元新生轴突的生长

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摘要

Posttranscriptional regulation of gene expression by mRNA-binding proteins is critical for neuronal development and function. hnRNP-Q1 is an mRNA-binding protein that regulates mRNA processing events, including translational repression. hnRNP-Q1 is highly expressed in brain tissue, suggesting a function in regulating genes critical for neuronal development. In this study, we have identified Growth-associated protein 43 (Gap-43) mRNA as a novel target of hnRNP-Q1 and have demonstrated that hnRNP-Q1 represses Gap-43 mRNA translation and consequently GAP-43 function. GAP-43 is a neuronal protein that regulates actin dynamics in growth cones and facilitates axonal growth. Previous studies have identified factors that regulate Gap-43 mRNA stability and localization, but it remains unclear whether Gap-43 mRNA translation is also regulated. Our results reveal that hnRNP-Q1 knockdown increased nascent axon length, total neurite length, and neurite number in mouse embryonic cortical neurons and enhanced Neuro2a cell process extension; these phenotypes were rescued by GAP-43 knockdown. Additionally, we have identified a G-quadruplex structure in the 5' untranslated region of Gap-43 mRNA that directly interacts with hnRNP-Q1 as a means to inhibit Gap-43 mRNA translation. Therefore hnRNP-Q1-mediated repression of Gap-43 mRNA translation provides an additional mechanism for regulating GAP-43 expression and function and may be critical for neuronal development.
机译:mRNA结合蛋白对基因表达的转录后调节对于神经元发育和功能至关重要。 hnRNP-Q1是一种可调节mRNA加工事件(包括翻译抑制)的mRNA结合蛋白。 hnRNP-Q1在脑组织中高度表达,表明在调节对神经元发育至关重要的基因中具有功能。在这项研究中,我们已经确定了生长相关蛋白43(Gap-43)mRNA作为hnRNP-Q1的新靶标,并证明hnRNP-Q1抑制了Gap-43 mRNA的翻译,进而抑制了GAP-43的功能。 GAP-43是一种神经元蛋白,可调节生长锥中的肌动蛋白动态并促进轴突生长。先前的研究已经确定了调节Gap-43 mRNA稳定性和定位的因素,但仍不清楚是否也调节Gap-43 mRNA的翻译。我们的结果显示,hnR​​NP-Q1敲低可增加小鼠胚胎皮质神经元的新生轴突长度,总神经突长度和神经突数量,并增强Neuro2a细胞过程的扩展。这些表型通过GAP-43敲除得以挽救。此外,我们在Gap-43 mRNA的5'非翻译区中发现了一个G四联体结构,该结构直接与hnRNP-Q1相互作用,以抑制Gap-43 mRNA的翻译。因此,hnRNP-Q1介导的抑制Gap-43 mRNA的翻译提供了调节GAP-43表达和功能的另一种机制,并且可能对神经元发育至关重要。

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