Department of Molecular Neuroscience, Graduate School of Medicine, Osaka University, 2-2, Yamadaoka, Suita, Osaka, 565-0871, Japan.
WPI Immunology Frontier Research Center, Osaka University, 3-1, Yamadaoka, Suita, Osaka, 565-0871, Japan.
Anat Sci Int. 2021 Mar;96(2):179-186. doi: 10.1007/s12565-020-00567-7. Epub 2021 Jan 3.
Chromatin exists as a non-linear, "three-dimensional" structure in the nuclear space. The dynamic alteration of the chromatin structure leads to transcriptional changes during the formation of the neuronal network. Several studies providing evidence for the link between the dysregulation of spatial chromatin architecture and developmental disorders have accumulated. Therefore, we studied and reviewed the regulation and dysregulation of 3D genome organization in the central nervous system, with a special focus on the cohesin complex that is crucial for the formation of the chromatin loop structure. This review summarizes the function and mechanisms of spatial chromatin architecture during the development of the central nervous system. We discuss the link between the disturbances in the 3D chromatin structure and the diseases of the central nervous system. Finally, we discuss how the knowledge of 3D genome organization may lead to further advances in diagnosis and therapy for the diseases of the central nervous system.
染色质存在于核空间的非线性“三维”结构中。染色质结构的动态改变导致神经元网络形成过程中的转录变化。有几项研究为空间染色质结构失调与发育障碍之间的联系提供了证据。因此,我们研究和综述了中枢神经系统中 3D 基因组组织的调节和失调,特别关注对染色质环结构形成至关重要的黏合蛋白复合物。这篇综述总结了中枢神经系统发育过程中空间染色质结构的功能和机制。我们讨论了 3D 染色质结构紊乱与中枢神经系统疾病之间的联系。最后,我们讨论了 3D 基因组组织的知识如何可能导致中枢神经系统疾病的诊断和治疗的进一步进展。