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SAF-A Regulates Interphase Chromosome Structure through Oligomerization with Chromatin-Associated RNAs

机译:SAF-A通过用染色质相关的RNA寡聚化调节间染色体结构

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摘要

Higher eukaryotic chromosomes are organized into topologically constrained functional domains; however, the molecular mechanisms required to sustain these complex interphase chromatin structures are unknown. A stable matrix underpinning nuclear organization was hypothesized, but the idea was abandoned as more dynamic models of chromatin behavior became prevalent. Here, we report that scaffold attachment factor A (SAF-A), originally identified as a structural nuclear protein, interacts with chromatin-associated RNAs (caRNAs) via its RGG domain to regulate human interphase chromatin structures in a transcription-dependent manner. Mechanistically, this is dependent on SAF-A's AAA(+) ATPase domain, which mediates cycles of protein oligomerization with caRNAs, in response to ATP binding and hydrolysis. SAF-A oligomerization decompacts large-scale chromatin structure while SAF-A loss or monomerization promotes aberrant chromosome folding and accumulation of genome damage. Our results show that SAF-A and caRNAs form a dynamic, transcriptionally responsive chromatin mesh that organizes large-scale chromosome structures and protects the genome from instability.
机译:将较高的真核染色体组织成拓扑限制的功能域;然而,维持这些复杂的染色质结构所需的分子机制是未知的。一个稳定的矩阵核对核组织是假设的,但由于染色质行为的更具动态模型变得普遍,因此该想法被遗弃。在此,我们报道了最初被鉴定为结构核蛋白的支架附着因子A(SAF-A)与染色质的相关的RNA(Carna)通过其RGG结构域与染色域相互作用以以转录依赖性方式调节人间染色质结构。机械地,这取决于SAF-A的AAA(+)ATPase结构域,其响应于ATP结合和水解,将蛋白质低聚的循环与Carna介导。 SAF-A低聚分解大规模的染色质结构,而SAF-A损失或单体化促进异常染色体折叠和基因组损伤的积累。我们的结果表明,SAF-A和Carnas形成动态,转录响应染色质斑点,组织大规模染色体结构并保护基因组免受不稳定。

著录项

  • 来源
    《Cell》 |2017年第7期|共32页
  • 作者单位

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Heriot Watt Univ Edinburgh Super Resolut Imaging Consortium Inst Biol Chem Biophys &

    Bioengn Edinburgh EH14 4AS Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med Ctr Genom &

    Expt Med Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Heriot Watt Univ Edinburgh Super Resolut Imaging Consortium Inst Biol Chem Biophys &

    Bioengn Edinburgh EH14 4AS Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

    Heriot Watt Univ Edinburgh Super Resolut Imaging Consortium Inst Biol Chem Biophys &

    Bioengn Edinburgh EH14 4AS Midlothian Scotland;

    Univ Edinburgh Edinburgh Med Sch Ctr Integrat Physiol George Sq Edinburgh EH8 9XD Midlothian Scotland;

    Univ Edinburgh Inst Genet &

    Mol Med MRC Human Genet Unit Crewe Rd Edinburgh EH4 2XU Midlothian Scotland;

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

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