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神经系统中的核架构。

Nuclear Architecture in the Nervous System.

机构信息

Institute for Regenerative Medicine and Department of Cell and Developmental Biology, Perelman School of Medicine, University of Pennsylvania, Smilow Center for Translational Research, Philadelphia, Pennsylvania, USA.

Department of Pediatrics, Gunma University Graduate School of Medicine, Maebashi, Japan.

出版信息

Results Probl Cell Differ. 2022;70:419-442. doi: 10.1007/978-3-031-06573-6_15.

Abstract

Neurons and glial cells in the nervous system exhibit different gene expression programs for neural development and function. These programs are controlled by the epigenetic regulatory layers in the nucleus. The nucleus is a well-organized subcellular organelle that includes chromatin, the nuclear lamina, and nuclear bodies. These subnuclear components operate together as epigenetic regulators of neural development and function and are collectively called the nuclear architecture. In the nervous system, dynamic rearrangement of the nuclear architecture has been observed in each cell type, especially in neurons, allowing for their specialized functions, including learning and memory formation. Although the importance of nuclear architecture has been debated for decades, the paradigm has been changing rapidly, owing to the development of new technologies. Here, we reviewed the latest studies on nuclear geometry, nuclear bodies, and heterochromatin compartments, as well as summarized recent novel insights regarding radial positioning, chromatin condensation, and chromatin interaction between genes and cis-regulatory elements.

摘要

神经系统中的神经元和神经胶质细胞表现出不同的基因表达程序,用于神经发育和功能。这些程序受细胞核内的表观遗传调控层控制。细胞核是一个组织良好的亚细胞细胞器,包括染色质、核纤层和核体。这些亚核成分共同作为神经发育和功能的表观遗传调节剂,统称为核架构。在神经系统中,已经观察到每个细胞类型,尤其是神经元中的核架构的动态重排,这允许它们具有专门的功能,包括学习和记忆形成。尽管几十年来一直存在关于核架构重要性的争论,但由于新技术的发展,这一范式正在迅速改变。在这里,我们回顾了关于核几何形状、核体和异染色质区室的最新研究,并总结了最近关于基因与顺式调控元件之间的径向定位、染色质浓缩和染色质相互作用的新见解。

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