Taylor Anne M, Berchtold Nicole C, Perreau Victoria M, Tu Christina H, Li Jeon Noo, Cotman Carl W
Institute for Brain Aging and Dementia, University of California, Irvine, Irvine, California 92697-4540, USA.
J Neurosci. 2009 Apr 15;29(15):4697-707. doi: 10.1523/JNEUROSCI.6130-08.2009.
Using a novel microfluidic chamber that allows the isolation of axons without contamination by nonaxonal material, we have for the first time purified mRNA from naive, matured CNS axons, and identified the presence of >300 mRNA transcripts. We demonstrate that the transcripts are axonal in nature, and that many of the transcripts present in uninjured CNS axons overlap with those previously identified in PNS injury-conditioned DRG axons. The axonal transcripts detected in matured cortical axons are enriched for protein translational machinery, transport, cytoskeletal components, and mitochondrial maintenance. We next investigated how the axonal mRNA pool changes after axotomy, revealing that numerous gene transcripts related to intracellular transport, mitochondria and the cytoskeleton show decreased localization 2 d after injury. In contrast, gene transcripts related to axonal targeting and synaptic function show increased localization in regenerating cortical axons, suggesting that there is an increased capacity for axonal outgrowth and targeting, and increased support for synapse formation and presynaptic function in regenerating CNS axons after injury. Our data demonstrate that CNS axons contain many mRNA species of diverse functions, and suggest that, like invertebrate and PNS axons, CNS axons synthesize proteins locally, maintaining a degree of autonomy from the cell body.
我们使用了一种新型微流控腔室,该腔室能够分离轴突而不受非轴突物质的污染。我们首次从未受损、成熟的中枢神经系统轴突中纯化出mRNA,并鉴定出存在300多种mRNA转录本。我们证明这些转录本本质上是轴突性的,并且未受损的中枢神经系统轴突中存在的许多转录本与先前在周围神经损伤条件下的背根神经节轴突中鉴定出的转录本重叠。在成熟的皮质轴突中检测到的轴突转录本富含蛋白质翻译机制、运输、细胞骨架成分和线粒体维持相关的转录本。接下来,我们研究了轴突切断后轴突mRNA库如何变化,结果显示与细胞内运输、线粒体和细胞骨架相关的众多基因转录本在损伤后2天显示定位减少。相反,与轴突靶向和突触功能相关的基因转录本在再生的皮质轴突中显示定位增加,这表明损伤后再生的中枢神经系统轴突中轴突生长和靶向的能力增强,对突触形成和突触前功能的支持增加。我们的数据表明中枢神经系统轴突包含许多具有不同功能的mRNA种类,并表明,与无脊椎动物和周围神经系统轴突一样,中枢神经系统轴突在局部合成蛋白质,保持一定程度的与细胞体的自主性。