Amin Neal D, Bai Ge, Klug Jason R, Bonanomi Dario, Pankratz Matthew T, Gifford Wesley D, Hinckley Christopher A, Sternfeld Matthew J, Driscoll Shawn P, Dominguez Bertha, Lee Kuo-Fen, Jin Xin, Pfaff Samuel L
Howard Hughes Medical Institute and Gene Expression Laboratory, Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA. Medical Scientist Training Program, University of California, San Diego (UCSD), 9500 Gilman Drive, La Jolla, CA 92037, USA. Biomedical Sciences Graduate Program, UCSD, 9500 Gilman Drive, La Jolla, CA 92037, USA.
Howard Hughes Medical Institute and Gene Expression Laboratory, Salk Institute for Biological Studies, 10010 North Torrey Pines Road, La Jolla, CA 92037, USA.
Science. 2015 Dec 18;350(6267):1525-9. doi: 10.1126/science.aad2509.
Dysfunction of microRNA (miRNA) metabolism is thought to underlie diseases affecting motoneurons. One miRNA, miR-218, is abundantly and selectively expressed by developing and mature motoneurons. Here we show that mutant mice lacking miR-218 die neonatally and exhibit neuromuscular junction defects, motoneuron hyperexcitability, and progressive motoneuron cell loss, all of which are hallmarks of motoneuron diseases such as amyotrophic lateral sclerosis and spinal muscular atrophy. Gene profiling reveals that miR-218 modestly represses a cohort of hundreds of genes that are neuronally enriched but are not specific to a single neuron subpopulation. Thus, the set of messenger RNAs targeted by miR-218, designated TARGET(218), defines a neuronal gene network that is selectively tuned down in motoneurons to prevent neuromuscular failure and neurodegeneration.
微小RNA(miRNA)代谢功能障碍被认为是影响运动神经元疾病的潜在原因。一种名为miR - 218的miRNA在发育中和成熟的运动神经元中大量且选择性地表达。我们在此表明,缺乏miR - 218的突变小鼠在出生时死亡,并表现出神经肌肉接头缺陷、运动神经元兴奋性过高以及进行性运动神经元细胞丢失,所有这些都是诸如肌萎缩侧索硬化症和脊髓性肌萎缩症等运动神经元疾病的特征。基因谱分析显示,miR - 218适度抑制了数百个在神经元中富集但并非特定于单个神经元亚群的基因。因此,被miR - 218靶向的一组信使RNA,命名为TARGET(218),定义了一个神经元基因网络,该网络在运动神经元中被选择性下调以预防神经肌肉功能衰竭和神经退行性变。