Closing the loops: chromatin loop dynamics after DNA damage.

Nucleus (Austin, Tex.) Pub Date : 2025-12-01 Epub Date: 2024-12-25 DOI:10.1080/19491034.2024.2438633
Pierre-Alexandre Vidi, Jing Liu, Keith Bonin, Kerry Bloom
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Abstract

Chromatin is a dynamic polymer in constant motion. These motions are heterogeneous between cells and within individual cell nuclei and are profoundly altered in response to DNA damage. The shifts in chromatin motions following genomic insults depend on the temporal and physical scales considered. They are also distinct in damaged and undamaged regions. In this review, we emphasize the role of chromatin tethering and loop formation in chromatin dynamics, with the view that pulsing loops are key contributors to chromatin motions. Chromatin tethers likely mediate micron-scale chromatin coherence predicted by polymer models and measured experimentally, and we propose that remodeling of the tethers in response to DNA breaks enables uncoupling of damaged and undamaged chromatin regions.

闭合环:DNA损伤后染色质环动力学。
染色质是一种不断运动的动态聚合物。这些运动在细胞之间和单个细胞核内是不均匀的,并且在DNA损伤的反应中被深刻地改变。基因组损伤后染色质运动的变化取决于所考虑的时间和物理尺度。它们在受损和未受损区域也是不同的。在这篇综述中,我们强调了染色质系结和环形成在染色质动力学中的作用,认为脉冲环是染色质运动的关键因素。通过聚合物模型和实验测量,染色质链可能介导了微米尺度的染色质一致性,我们提出,响应DNA断裂的染色质链的重塑可以使受损和未受损的染色质区域解偶联。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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