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Effects of human sex chromosome dosage on spatial chromosome organization

机译:人类性染色体剂量对空间染色体组织的影响

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Sex chromosome aneuploidies (SCAs) are common genetic syndromes characterized by the presence of an aberrant number of X and Y chromosomes due to meiotic defects. These conditions impact the structure and function of diverse tissues, but the proximal effects of SCAs on genome organization are unknown. Here, to determine the consequences of SCAs on global genome organization, we have analyzed multiple architectural features of chromosome organization in a comprehensive set of primary cells from SCA patients with various ratios of X and Y chromosomes by use of imaging-based high-throughput chromosome territory mapping (HiCTMap). We find that X chromosome supernumeracy does not affect the size, volume, or nuclear position of the Y chromosome or an autosomal chromosome. In contrast, the active X chromosome undergoes architectural changes as a function of increasing X copy number as measured by a decrease in size and an increase in circularity, which is indicative of chromatin compaction. In Y chromosome supernumeracy, Y chromosome size is reduced suggesting higher chromatin condensation. The radial positioning of chromosomes is unaffected in SCA karyotypes. Taken together, these observations document changes in genome architecture in response to alterations in sex chromosome numbers and point to trans-effects of dosage compensation on chromosome organization.
机译:性染色体非流量倍增性(SCAS)是常见的遗传综合征,其特征在于由于减数分裂缺陷而存在异常数量的X和Y染色体。这些条件会影响各种组织的结构和功能,但SCAS对基因组组织的近似效应是未知的。在这里,为了确定SCAS对全球基因组组织的后果,我们通过使用基于成像的高通量染色体,分析了来自SCA患者的综合患者的综合原代细胞中的多种建筑特征。通过使用基于成像的高通量染色体领土映射(HictMap)。我们发现X染色体超级度不会影响Y染色体或常染色体染色体的大小,体积或核位置。相反,活性X染色体经历架构变化,作为通过减小尺寸的降低和圆形度的增加来增加X拷贝数的函数,这表明染色质压实。在Y染色体超值,Y染色体尺寸降低表明染色质缩合更高。染色体的径向定位在SCA核型中不受影响。总之,这些观察结果响应性染色体数量的改变和点对性补偿对染色体组织的剂量补偿的变化而言,这些观察结果的变化。

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