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染色体区域在间期的混合表明其在易位和转录依赖性关联中发挥作用。

Intermingling of chromosome territories in interphase suggests role in translocations and transcription-dependent associations.

作者信息

Branco Miguel R, Pombo Ana

机构信息

MRC Clinical Sciences Centre, Faculty of Medicine, Imperial College London, Hammersmith Hospital Campus, London, United Kingdom.

出版信息

PLoS Biol. 2006 May;4(5):e138. doi: 10.1371/journal.pbio.0040138. Epub 2006 Apr 25.

Abstract

After mitosis, mammalian chromosomes partially decondense to occupy distinct territories in the cell nucleus. Current models propose that territories are separated by an interchromatin domain, rich in soluble nuclear machinery, where only rare interchromosomal interactions can occur via extended chromatin loops. In contrast, recent evidence for chromatin mobility and high frequency of chromosome translocations are consistent with significant levels of chromosome intermingling, with important consequences for genome function and stability. Here we use a novel high-resolution in situ hybridization procedure that preserves chromatin nanostructure to show that chromosome territories intermingle significantly in the nucleus of human cells. The degree of intermingling between specific chromosome pairs in human lymphocytes correlates with the frequency of chromosome translocations in the same cell type, implying that double-strand breaks formed within areas of intermingling are more likely to participate in interchromosomal rearrangements. The presence of transcription factories in regions of intermingling and the effect of transcription impairment on the interactions between chromosomes shows that transcription-dependent interchromosomal associations shape chromosome organization in mammalian cells. These findings suggest that local chromatin conformation and gene transcription influence the extent with which chromosomes interact and affect their overall properties, with direct consequences for cell-type specific genome stability.

摘要

有丝分裂后,哺乳动物染色体部分解聚,在细胞核中占据不同的区域。目前的模型认为,这些区域被富含可溶性核机制的染色质间结构域分隔开,在该结构域中,只有通过延伸的染色质环才能发生罕见的染色体间相互作用。相比之下,最近关于染色质流动性和高频率染色体易位的证据与显著水平的染色体相互混合相一致,这对基因组功能和稳定性具有重要影响。在这里,我们使用一种能够保留染色质纳米结构的新型高分辨率原位杂交方法,来表明染色体区域在人类细胞核中显著相互混合。人类淋巴细胞中特定染色体对之间的混合程度与同一细胞类型中染色体易位的频率相关,这意味着在混合区域内形成的双链断裂更有可能参与染色体间的重排。混合区域中存在转录工厂以及转录损伤对染色体间相互作用的影响表明,转录依赖性染色体间关联塑造了哺乳动物细胞中的染色体组织。这些发现表明,局部染色质构象和基因转录会影响染色体相互作用的程度,并影响其整体特性,这对细胞类型特异性基因组稳定性具有直接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c7d/1459234/c8649a7ac481/pbio.0040138.g001.jpg

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