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The scaling features of the 3D organization of chromosomes are highlighted by a transformation a la Kadanoff of Hi-C data

机译:通过高C数据的La Kadanoff突出显示3D组织的缩放特征

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摘要

Technologies such as Hi-C and GAM have revealed that chromosomes are not randomly folded into the nucleus of cells, but are composed by a sequence of contact domains (TADs), each typically 0.5 Mb long. However, the larger scale organization of the genome remains still not well understood. To investigate the scaling behaviour of chromosome folding, here we apply an approach a la Kadanoff, inspired by the Renormalization Group theory, to Hi-C interaction data, across different cell types and chromosomes. We find that the genome is characterized by complex scaling features, where the average size of contact domains exhibits a power-law behaviour with the rescaling level. That is compatible with the existence of contact domains extending across length scales up to chromosomal sizes. The scaling exponent is statistically indistinguishable among the different murine cell types analysed. These results point toward a scenario of a universal higher-order spatial architecture of the genome, which could reflect fundamental, organizational principles. Copyright (C) EPLA, 2018.
机译:诸如HI-C和GAM的技术表明,染色体未随机折叠到细胞核中,而是由一系列接触区域(TAD)组成,每个常规为0.5mb长。然而,基因组的较大规模组织仍然不太了解。为了探讨染色体折叠的缩放行为,在这里,我们在不同细胞类型和染色体上应用由重新定化组理论的La Kadanoff,灵感来自Renormalization Group理论的启发。我们发现该基因组的特征在于复杂的缩放特征,其中接触域的平均尺寸表现出具有重构水平的动力法行为。与横跨长度缩小的接触域的存在兼容,兼容染色体尺寸。在分析的不同鼠细胞类型中,缩放指数在统计上难以区分。这些结果指出了基因组的普遍高阶空间架构的场景,这可能反映了基本的组织原则。版权所有(c)epla,2018。

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  • 来源
    《EPL》 |2017年第4期|共6页
  • 作者单位

    Univ Napoli Federico II Dipartimento Fis I-80126 Naples Italy;

    Univ Napoli Federico II Dipartimento Fis I-80126 Naples Italy;

    Univ Napoli Federico II Dipartimento Fis I-80126 Naples Italy;

    Univ Napoli Federico II Dipartimento Fis I-80126 Naples Italy;

    Univ Napoli Federico II Dipartimento Fis I-80126 Naples Italy;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理学;
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