Istituto di Analisi dei Sistemi ed Informatica "Antonio Ruberti" (IASI)-CNR, Rome, Italy.
Department of Neuroscience, Università Cattolica del Sacro Cuore, Rome, Italy.
Stem Cells. 2021 Dec;39(12):1601-1614. doi: 10.1002/stem.3444. Epub 2021 Aug 25.
Nucleoporins (Nups) are components of the nuclear pore complex that, besides regulating nucleus-cytoplasmic transport, emerged as a hub for chromatin interaction and gene expression modulation. Specifically, Nups act in a dynamic manner both at specific gene level and in the topological organization of chromatin domains. As such, they play a fundamental role during development and determination of stemness/differentiation balance in stem cells. An increasing number of reports indicate the implication of Nups in many central nervous system functions with great impact on neurogenesis, neurophysiology, and neurological disorders. Nevertheless, the role of Nup-mediated epigenetic regulation in embryonic and adult neural stem cells (NSCs) is a field largely unexplored and the comprehension of their mechanisms of action is only beginning to be unveiled. After a brief overview of epigenetic mechanisms, we will present and discuss the emerging role of Nups as new effectors of neuroepigenetics and as dynamic platform for chromatin function with specific reference to the biology of NSCs.
核孔蛋白(Nups)是核孔复合体的组成部分,除了调节核质运输外,还作为染色质相互作用和基因表达调控的中心出现。具体来说,Nups 在特定基因水平和染色质结构域的拓扑组织中以动态方式发挥作用。因此,它们在发育过程中以及在干细胞的干性/分化平衡的决定中起着至关重要的作用。越来越多的报告表明,Nups 在许多中枢神经系统功能中具有重要意义,对神经发生、神经生理学和神经退行性疾病都有重大影响。然而,Nup 介导的表观遗传调控在胚胎和成年神经干细胞(NSCs)中的作用在很大程度上尚未被探索,其作用机制的理解才刚刚开始揭示。在简要概述表观遗传机制之后,我们将介绍和讨论 Nups 作为神经表观遗传学的新效应因子以及作为染色质功能的动态平台的新兴作用,并特别参考 NSCs 的生物学。