Biocomplexity Institute of Virginia Tech, Blacksburg, VA, 24061, USA.
Department of Biological Sciences, Virginia Tech, Blacksburg, VA, 24061, USA.
Epigenetics Chromatin. 2019 Feb 14;12(1):13. doi: 10.1186/s13072-019-0257-x.
DNA methylation plays important roles in the regulation of nervous system development and in cellular responses to environmental stimuli such as light-derived signals. Despite great efforts in understanding the maturation and refinement of visual circuits, we lack a clear understanding of how changes in DNA methylation correlate with visual activity in the developing subcortical visual system, such as in the dorsal lateral geniculate nucleus (dLGN), the main retino-recipient region in the dorsal thalamus. Here, we explored epigenetic dynamics underlying dLGN development at ages before and after eye opening in wild-type mice and mutant mice in which retinal ganglion cells fail to form. We observed that development-related epigenetic changes tend to co-localize together on functional genomic regions critical for regulating gene expression, while retinal-input-induced epigenetic changes are enriched on repetitive elements. Enhancers identified in neurons are prone to methylation dynamics during development, and activity-induced enhancers are associated with retinal-input-induced epigenetic changes. Intriguingly, the binding motifs of activity-dependent transcription factors, including EGR1 and members of MEF2 family, are enriched in the genomic regions with epigenetic aberrations in dLGN tissues of mutant mice lacking retinal inputs. Overall, our study sheds new light on the epigenetic regulatory mechanisms underlying the role of retinal inputs on the development of mouse dLGN.
DNA 甲基化在神经系统发育的调控以及细胞对环境刺激(如光信号)的反应中起着重要作用。尽管人们在理解视觉回路的成熟和细化方面做出了巨大努力,但我们仍不清楚 DNA 甲基化的变化如何与发育中的皮层下视觉系统(如背外侧膝状体核,dLGN)中的视觉活动相关联,dLGN 是背丘脑的主要视网膜接收区域。在这里,我们在野生型和突变型小鼠(视网膜神经节细胞无法形成)的开眼前和开眼后时期探索了 dLGN 发育的表观遗传动态。我们观察到,与发育相关的表观遗传变化往往共同定位于对调节基因表达至关重要的功能基因组区域,而视网膜输入诱导的表观遗传变化则富集在重复元件上。在发育过程中,神经元中的增强子易于发生甲基化动态变化,而活性诱导的增强子与视网膜输入诱导的表观遗传变化相关。有趣的是,包括 EGR1 和 MEF2 家族成员在内的活性依赖性转录因子的结合基序在缺乏视网膜输入的突变型小鼠的 dLGN 组织中具有表观遗传异常的基因组区域中富集。总的来说,我们的研究为视网膜输入在小鼠 dLGN 发育中的作用的表观遗传调控机制提供了新的认识。