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Exploring chromatin organization mechanisms through its dynamic properties

机译:通过其动态特性探索染色质组织机制

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The organization of the genome in the nucleus is believed to be crucial for different cellular functions. It is known that chromosomes fold into distinct territories, but little is known about the mechanisms that maintain these territories. To explore these mechanisms, we used various live-cell imaging methods, including single particle tracking to characterize the diffusion properties of different genomic regions in live cells. Chromatin diffusion is found to be slow and anomalous; in vast contrast, depletion of lamin A protein significantly increases chromatin motion, and the diffusion pattern of chromatin transforms from slow anomalous to fast normal. More than this, depletion of lamin A protein also affects the dynamics of nuclear bodies. Our findings indicate that chromatin motion is mediated by lamin A and we suggest that constrained chromatin mobility allows to maintain chromosome territories. Thus, the discovery of this function of nucleoplasmic lamin A proteins sheds light on the maintenance mechanism of chromosome territories in the interphase nucleus, which ensures the proper function of the genome.
机译:人们认为细胞核中基因组的组织对于不同的细胞功能至关重要。众所周知,染色体折叠成不同的区域,但是对维持这些区域的机制知之甚少。为了探索这些机制,我们使用了多种活细胞成像方法,包括单粒子跟踪来表征活细胞中不同基因组区域的扩散特性。染色质扩散缓慢且异常;与之形成鲜明对比的是,层粘蛋白A蛋白质的消耗会显着增加染色质的运动,并且染色质的扩散模式会从缓慢的异常转变为快速正常。除此之外,核纤层蛋白A蛋白质的消耗还影响核体的动力学。我们的发现表明,染色质运动是由层粘连蛋白A介导的,我们建议约束染色质迁移率可以维持染色体区域。因此,核质层粘连蛋白A蛋白这种功能的发现阐明了相间核中染色体区域的维持机制,从而确保了基因组的适当功能。

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