State Key Laboratory of Neuroscience, Institute of Neuroscience, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, 320 Yue Yang Road, Shanghai 200031, China.
J Mol Cell Biol. 2010 Jun;2(3):152-63. doi: 10.1093/jmcb/mjq008. Epub 2010 May 10.
The involvement of microRNAs (miRNAs) in the development of the neural crest (NC) cells and other neuronal differentiation is still poorly understood. Here, we investigated the global function of miRNAs in embryonic development by examining the Wnt1-cre-mediated Dicer knockout mice. Dicer ablation resulted in malformation of the midbrain and cerebellum and failure of NC and dopaminergic differentiation. First, the Dicer mutant fetuses exhibited dramatic malformation of the tectum and cerebellum and the eyelids were open. Second, the skeletal structures that are derived from the cranial NC were lost or mostly ablated in Dicer mutant mice. Third, deletion of Dicer in the NC cells resulted in the malformation of the dorsal root ganglia, enteric nervous system and sympathetic ganglia. Interestingly, the expression of neuropeptide Y and its potential regulators TrkA, AP-2alpha and AP-2beta was largely abolished in sympathetic neurons of Dicer mutant mice. Fourth, in situ hybridization data revealed that the expression of miR-9, miR-124 and miR-218 in the midbrain and rostral hindbrain area was mostly eliminated in the Dicer mutant mice. We then demonstrated that the development of dopaminergic neurons was impaired in Dicer-deleted mice. Our studies therefore suggest that miRNAs contribute to the embryonic development in multiple locations.
微小 RNA(miRNAs)在神经嵴(NC)细胞发育和其他神经元分化中的作用仍知之甚少。在这里,我们通过研究 Wnt1-cre 介导的 Dicer 敲除小鼠,研究了 miRNAs 在胚胎发育中的全局功能。Dicer 缺失导致中脑和小脑畸形以及 NC 和多巴胺能分化失败。首先,Dicer 突变体胎儿表现出明显的顶盖和小脑畸形,并且眼睑张开。其次,源自颅神经嵴的骨骼结构在 Dicer 突变小鼠中丢失或大部分被消融。第三,NC 细胞中 Dicer 的缺失导致背根神经节、肠神经系统和交感神经节的畸形。有趣的是,在 Dicer 突变小鼠的交感神经元中,神经肽 Y 及其潜在调节剂 TrkA、AP-2alpha 和 AP-2beta 的表达大部分被消除。第四,原位杂交数据显示,miR-9、miR-124 和 miR-218 在中脑和头后脑区的表达在 Dicer 突变小鼠中大部分被消除。然后,我们证明了多巴胺能神经元在 Dicer 缺失的小鼠中发育受损。因此,我们的研究表明 miRNAs 有助于多个部位的胚胎发育。