Saal Lena, Briese Michael, Kneitz Susanne, Glinka Michael, Sendtner Michael
Institute for Clinical Neurobiology, University of Wuerzburg, D 97078 Wuerzburg, Germany.
Department of Physiological Chemistry I, Biocenter, University of Wuerzburg, D 97074 Wuerzburg, Germany.
RNA. 2014 Nov;20(11):1789-802. doi: 10.1261/rna.047373.114. Epub 2014 Sep 22.
Neuronal function critically depends on coordinated subcellular distribution of mRNAs. Disturbed mRNA processing and axonal transport has been found in spinal muscular atrophy and could be causative for dysfunction and degeneration of motoneurons. Despite the advances made in characterizing the transport mechanisms of several axonal mRNAs, an unbiased approach to identify the axonal repertoire of mRNAs in healthy and degenerating motoneurons has been lacking. Here we used compartmentalized microfluidic chambers to investigate the somatodendritic and axonal mRNA content of cultured motoneurons by microarray analysis. In axons, transcripts related to protein synthesis and energy production were enriched relative to the somatodendritic compartment. Knockdown of Smn, the protein deficient in spinal muscular atrophy, produced a large number of transcript alterations in both compartments. Transcripts related to immune functions, including MHC class I genes, and with roles in RNA splicing were up-regulated in the somatodendritic compartment. On the axonal side, transcripts associated with axon growth and synaptic activity were down-regulated. These alterations provide evidence that subcellular localization of transcripts with axonal functions as well as regulation of specific transcripts with nonautonomous functions is disturbed in Smn-deficient motoneurons, most likely contributing to the pathophysiology of spinal muscular atrophy.
神经元功能严重依赖于mRNA在亚细胞水平的协调分布。在脊髓性肌萎缩症中已发现mRNA加工和轴突运输受到干扰,这可能是运动神经元功能障碍和退化的原因。尽管在表征几种轴突mRNA的运输机制方面取得了进展,但一直缺乏一种无偏见的方法来鉴定健康和退化运动神经元中mRNA的轴突组成。在这里,我们使用分隔式微流控腔室,通过微阵列分析来研究培养的运动神经元的树突体和轴突中的mRNA含量。在轴突中,与蛋白质合成和能量产生相关的转录本相对于树突体部分有所富集。脊髓性肌萎缩症中缺乏的蛋白质Smn的敲低,在两个部分都产生了大量的转录本改变。与免疫功能相关的转录本,包括MHC I类基因,以及在RNA剪接中起作用的转录本,在树突体部分上调。在轴突方面,与轴突生长和突触活动相关的转录本下调。这些改变提供了证据,表明在缺乏Smn的运动神经元中,具有轴突功能的转录本的亚细胞定位以及具有非自主功能的特定转录本的调节受到干扰,这很可能导致了脊髓性肌萎缩症的病理生理学。