DeBoer E M, Kraushar M L, Hart R P, Rasin M-R
Department of Neuroscience and Cell Biology, Robert Wood Johnson Medical School, Piscataway, NJ 08854, USA.
Department of Cell Biology and Neuroscience, Rutgers University, Piscataway, NJ 08854, USA.
Neuroscience. 2013 Sep 17;248:499-528. doi: 10.1016/j.neuroscience.2013.05.042. Epub 2013 May 30.
The mature neocortex is a unique six-layered mammalian brain region. It is composed of morphologically and functionally distinct subpopulations of primary projection neurons that form complex circuits across the central nervous system. The precisely-timed generation of projection neurons from neural stem cells governs their differentiation, postmitotic specification, and signaling, and is critical for cognitive and sensorimotor ability. Developmental perturbations to the birthdate, location, and connectivity of neocortical neurons are observed in neurological and psychiatric disorders. These facts are highlighting the importance of the precise spatiotemporal development of the neocortex regulated by intricate transcriptional, but also complex post-transcriptional events. Indeed, mRNA transcripts undergo many post-transcriptional regulatory steps before the production of functional proteins, which specify neocortical neural stem cells and subpopulations of neocortical neurons. Therefore, particular attention is paid to the differential post-transcriptional regulation of key transcripts by RNA-binding proteins, including splicing, localization, stability, and translation. We also present a transcriptome screen of candidate molecules associated with post-transcriptional mRNA processing that are differentially expressed at key developmental time points across neocortical prenatal neurogenesis.
成熟的新皮层是哺乳动物大脑中独特的六层结构区域。它由形态和功能各异的初级投射神经元亚群组成,这些神经元在中枢神经系统中形成复杂的回路。神经干细胞精确计时产生投射神经元,这决定了它们的分化、有丝分裂后特化和信号传导,对认知和感觉运动能力至关重要。在神经和精神疾病中可观察到新皮层神经元出生日期、位置和连接性的发育扰动。这些事实凸显了由复杂的转录以及复杂的转录后事件调控的新皮层精确时空发育的重要性。事实上,mRNA转录本在产生功能性蛋白质之前要经历许多转录后调控步骤,这些蛋白质决定了新皮层神经干细胞和新皮层神经元亚群。因此,人们特别关注RNA结合蛋白对关键转录本的差异转录后调控,包括剪接、定位、稳定性和翻译。我们还展示了与转录后mRNA加工相关的候选分子的转录组筛选结果,这些分子在新皮层产前神经发生的关键发育时间点上差异表达。