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Nucleosome-nucleosome interactions via histone tails and linker DNA regulate nuclear rigidity

机译:通过组蛋白尾部和接头DNA的核微核体相互作用调节核刚性

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摘要

Cells, as well as the nuclei inside them, experience significant mechanical stress in diverse biological processes, including contraction, migration, and adhesion. The structural stability of nuclei must therefore be maintained in order to protect genome integrity. Despite extensive knowledge on nuclear architecture and components, however, the underlying physical and molecular mechanisms remain largely unknown. We address this by subjecting isolated human cell nuclei to microneedle-based quantitative micromanipulation with a series of biochemical perturbations of the chromatin. We find that the mechanical rigidity of nuclei depends on the continuity of the nucleosomal fiber and interactions between nucleosomes. Disrupting these chromatin features by varying cation concentration, acetylating histone tails, or digesting linker DNA results in loss of nuclear rigidity. In contrast, the levels of key chromatin assembly factors, including cohesin, condensin II, and CTCF, and a major nuclear envelope protein, lamin, are unaffected. Together with in situ evidence using living cells and a simple mechanical model, our findings reveal a chromatin-based regulation of the nuclear mechanical response and provide insight into the significance of local and global chromatin structures, such as those associated with interdigitated or melted nucleosomal fibers.
机译:细胞以及它们内部的细胞核,在不同的生物过程中经历显着的机械应力,包括收缩,迁移和粘附。因此必须保持核的结构稳定性以保护基因组完整性。然而,尽管对核建筑和组件进行了广泛的了解,但潜在的物理和分子机制仍然很大程度上是未知的。通过将分离的人细胞核进行分离的人细胞核,通过染色质的一系列生化扰动进行分离的人细胞核来解决这一点。我们发现核的机械刚度取决于核体纤维的连续性和核肉之间的相互作用。通过改变阳离子浓度,乙酰化组蛋白尾部或消化接头DNA来破坏这些染色质特征,导致核刚性丧失。相比之下,关键染色质组装因子的水平,包括休谷蛋白,夹蛋白II和CTCF,以及主要的核封蛋白,Lamin不受影响。我们的研究结果与原位证据一起使用了核心机械响应的基于染色质的染色质调节,并提供了局部和全局染色质结构的意义,例如与互分配或熔化的核致纤维相关的染色蛋白结构的重要性。

著录项

  • 来源
    《Molecular biology of the cell》 |2017年第11期|共10页
  • 作者单位

    Natl Inst Genet Frontier Res Ctr Quantitat Mechanobiol Lab Mishima Shizuoka 4118540 Japan;

    Natl Inst Genet Struct Biol Ctr Biol Macromol Lab Mishima Shizuoka 4118540 Japan;

    Nagasaki Univ Sch Med Biomed Res Support Ctr Nagasaki 8528523 Japan;

    Natl Inst Genet Struct Biol Ctr Biol Macromol Lab Mishima Shizuoka 4118540 Japan;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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