细胞外刺激特异性地调节单个神经元mRNA的局部水平。
Extracellular stimuli specifically regulate localized levels of individual neuronal mRNAs.
作者信息
Willis Dianna E, van Niekerk Erna A, Sasaki Yukio, Mesngon Mariano, Merianda Tanuja T, Williams Gervan G, Kendall Marvin, Smith Deanna S, Bassell Gary J, Twiss Jeffery L
机构信息
Nemours Biomedical Research, Alfred I duPont Hospital for Children, Wilmington, DE 19803, USA.
出版信息
J Cell Biol. 2007 Sep 10;178(6):965-80. doi: 10.1083/jcb.200703209. Epub 2007 Sep 4.
Subcellular regulation of protein synthesis requires the correct localization of messenger RNAs (mRNAs) within the cell. In this study, we investigate whether the axonal localization of neuronal mRNAs is regulated by extracellular stimuli. By profiling axonal levels of 50 mRNAs detected in regenerating adult sensory axons, we show that neurotrophins can increase and decrease levels of axonal mRNAs. Neurotrophins (nerve growth factor, brain-derived neurotrophic factor, and neurotrophin-3) regulate axonal mRNA levels and use distinct downstream signals to localize individual mRNAs. However, myelin-associated glycoprotein and semaphorin 3A regulate axonal levels of different mRNAs and elicit the opposite effect on axonal mRNA levels from those observed with neurotrophins. The axonal mRNAs accumulate at or are depleted from points of ligand stimulation along the axons. The translation product of a chimeric green fluorescent protein-beta-actin mRNA showed similar accumulation or depletion adjacent to stimuli that increase or decrease axonal levels of endogenous beta-actin mRNA. Thus, extracellular ligands can regulate protein generation within subcellular regions by specifically altering the localized levels of particular mRNAs.
蛋白质合成的亚细胞调控需要信使核糖核酸(mRNA)在细胞内的正确定位。在本研究中,我们调查神经元mRNA的轴突定位是否受细胞外刺激的调控。通过分析在成年感觉轴突再生过程中检测到的50种mRNA的轴突水平,我们发现神经营养因子可增加和降低轴突mRNA的水平。神经营养因子(神经生长因子、脑源性神经营养因子和神经营养因子-3)调节轴突mRNA水平,并利用不同的下游信号来定位单个mRNA。然而,髓磷脂相关糖蛋白和信号素3A调节不同mRNA的轴突水平,并对轴突mRNA水平产生与神经营养因子所观察到的相反的影响。轴突mRNA在沿轴突的配体刺激点处积累或减少。嵌合绿色荧光蛋白-β-肌动蛋白mRNA的翻译产物在增加或降低内源性β-肌动蛋白mRNA轴突水平的刺激附近表现出类似的积累或减少。因此,细胞外配体可通过特异性改变特定mRNA的定位水平来调节亚细胞区域内的蛋白质生成。