Mammalian Genetics Unit, MRC Harwell, Harwell Science and Innovation Campus, Oxfordshire, OX11 0RD, UK,
Mamm Genome. 2013 Dec;24(11-12):459-72. doi: 10.1007/s00335-013-9486-7. Epub 2013 Nov 19.
The brain is a functionally complex organ, the patterning and development of which are key to adult health. To help elucidate the genetic networks underlying mammalian brain patterning, we conducted detailed transcriptional profiling during embryonic development of the mouse brain. A total of 2,400 genes were identified as showing differential expression between three developmental stages. Analysis of the data identified nine gene clusters to demonstrate analogous expression profiles. A significant group of novel genes of as yet undiscovered biological function were detected as being potentially relevant to brain development and function, in addition to genes that have previously identified roles in the brain. Furthermore, analysis for genes that display asymmetric expression between the left and right brain hemispheres during development revealed 35 genes as putatively asymmetric from a combined data set. Our data constitute a valuable new resource for neuroscience and neurodevelopment, exposing possible functional associations between genes, including novel loci, and encouraging their further investigation in human neurological and behavioural disorders.
大脑是一个功能复杂的器官,其模式形成和发育是成年健康的关键。为了帮助阐明哺乳动物大脑模式形成的遗传网络,我们在小鼠胚胎发育过程中进行了详细的转录谱分析。共有 2400 个基因被确定为在三个发育阶段之间表现出差异表达。数据分析确定了九个基因簇,以展示类似的表达谱。一组显著的新基因,其尚未发现的生物学功能,被认为与大脑发育和功能相关,除了以前在大脑中确定的基因。此外,对在发育过程中左右大脑半球之间显示不对称表达的基因进行分析,从组合数据集中共发现 35 个基因可能是不对称的。我们的数据为神经科学和神经发育提供了一个有价值的新资源,揭示了基因之间可能的功能关联,包括新的基因座,并鼓励进一步研究人类神经和行为障碍。